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water, which equates to a freeze point of -34°F (-36°C). Coolant concentration testing is possible with a hydrometer or antifreeze tester (such as the Rotunda Battery and Antifreeze Tester, 014–R1060). The level of coolant should be maintained at the “FULL COLD” level or within the “COLD FILL RANGE” in the coolant reservoir. If the level falls below, add coolant per the instructions in the Adding engine coolant section. Your vehicle was factory-filled with a 50/50 engine coolant and water concentration. If the concentration of coolant falls below 40% or above 60%, the engine parts could become damaged or not work properly. A 50–50 mixture of coolant and water provides the following: • Freeze protection down to -34°F (-36°C). • Boiling protection up to 265°F (129°C). • Protection against rust and other forms of corrosion.


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• Enables calibrated gauges to work properly. When the engine is cold, check the level of the engine coolant in the reservoir.


COLD FILL LEVEL


• The engine coolant should be at the “FULL COLD” level or within the


“COLD FILL RANGE” as listed on the engine coolant reservoir (depending upon application). • Refer to the Scheduled Maintenance Guide for service interval • Be sure to read and understand Precautions when servicing your


schedules.


vehicle in this chapter.


If the engine coolant has not been checked at the recommended interval, the engine coolant reservoir may become low or empty. If the reservoir is low or empty, add engine coolant to the reservoir. Refer to Adding engine coolant in this chapter. Note: Automotive fluids are not interchangeable; do not use engine coolant, antifreeze or windshield washer fluid outside of its specified function and vehicle location.


Adding engine coolant When adding coolant, make sure it is a 50/50 mixture of engine coolant and distilled water. Add the mixture to the coolant reservoir, when the engine is cool, until the appropriate fill level is obtained.


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Do not add engine coolant when the engine is hot. Steam and scalding liquids released from a hot cooling system can burn you badly. Also, you can be burned if you spill coolant on hot engine parts.


Do not put engine coolant in the windshield washer fluid container. If sprayed on the windshield, engine coolant could


make it difficult to see through the windshield. • Add Motorcraft Premium Gold Engine Coolant (yellow-colored), VC-7–A (U.S., except CA and OR), VC-7–B (CA and OR only), meeting Ford Specification WSS-M97B51–A1.


Note: Use of Motorcraft Cooling System Stop Leak Pellets, VC-6, may darken the color of Motorcraft Premium Gold Engine Coolant from yellow to golden tan. • Do not add/mix an orange-colored, extended life coolant such as Motorcraft Speciality Orange Engine Coolant, VC-2 (US) or CXC-209 (Canada), meeting Ford specification WSS-M97B44–D with the factory-filled coolant. Mixing Motorcraft Speciality Orange Engine Coolant or any orange-colored extended life product with your factory filled coolant can result in degraded corrosion protection. • A large amount of water without engine coolant may be added, in case of emergency, to reach a vehicle service location. In this instance, the cooling system must be drained and refilled with a 50/50 mixture of engine coolant and distilled water as soon as possible. Water alone (without engine coolant) can cause engine damage from corrosion, overheating or freezing. • Do not use alcohol, methanol, brine or any engine coolants mixed with alcohol or methanol antifreeze (coolant). Alcohol and other liquids can cause engine damage from overheating or freezing.


• Do not add extra inhibitors or additives to the coolant. These


can be harmful and compromise the corrosion protection of the engine coolant.


For vehicles with overflow coolant systems with a non-pressurized cap on the coolant recovery system, add coolant to the coolant recovery reservoir when the engine is cool. Add the proper mixture of coolant and water to the “FULL COLD” level. For all other vehicles, which have a coolant degas system with a pressurized cap, or if it is necessary to


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remove the coolant pressure relief cap on the radiator of a vehicle with an overflow system, follow these steps to add engine coolant.


To reduce the risk of personal injury, make sure the engine is cool before unscrewing the coolant pressure relief cap. The


cooling system is under pressure; steam and hot liquid can come out forcefully when the cap is loosened slightly.


1. Before you begin, turn the engine off and let it cool. 2. When the engine is cool, wrap a thick cloth around the coolant pressure relief cap on the coolant reservoir (a translucent plastic bottle). Slowly turn cap counterclockwise (left) until pressure begins to release. 3. Step back while the pressure releases. 4. When you are sure that all the pressure has been released, use the cloth to turn it counterclockwise and remove the cap. 5. Fill the coolant reservoir slowly with the proper coolant mixture (see above), to within the “COLD FILL RANGE” or the “FULL COLD” level on the reservoir. If you removed the radiator cap in an overflow system, fill the radiator until the coolant is visible and radiator is almost full. 6. Replace the cap. Turn until tightly installed. (Cap must be tightly installed to prevent coolant loss.) After any coolant has been added, check the coolant concentration, refer to Checking engine coolant. If the concentration is not 50/50
(protection to –34° F/–36° C), drain some coolant and adjust the concentration. It may take several drains and additions to obtain a 50/50
coolant concentration. Whenever coolant has been added, the coolant level in the coolant reservoir should be checked the next few times you drive the vehicle. If necessary, add enough 50/50 concentration of engine coolant and distilled water to bring the liquid level to the proper level. If you have to add more than 1.0 liter (1.0 quart) of engine coolant per month, have your dealer check the engine cooling system. Your cooling system may have a leak. Operating an engine with a low level of coolant can result in engine overheating and possible engine damage.


Recycled engine coolant Ford Motor Company does NOT recommend the use of recycled engine coolant in vehicles originally equipped with Motorcraft Premium Gold Engine Coolant since a Ford-approved recycling process is not yet available.


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Used engine coolant should be disposed of in an appropriate


manner. Follow your community’s regulations and standards for recycling and disposing of automotive fluids.


Coolant refill capacity To find out how much fluid your vehicle’s cooling system can hold, refer to Refill capacities in this section. Fill your engine coolant reservoir as outlined in Adding engine coolant in this section.


Severe climates If you drive in extremely cold climates (less than –36° C [–34° F]): • It may be necessary to increase the coolant concentration • NEVER increase the coolant concentration above 60%. • Increased engine coolant concentrations above 60% will


above 50%.


decrease the overheat protection characteristics of the engine coolant and may cause engine damage.


• Refer to the chart on the coolant container to ensure the


coolant concentration in your vehicle will provide adequate freeze protection at the temperatures in which you drive in the winter months.


above 40%.


If you drive in extremely hot climates: • It is still necessary to maintain the coolant concentration • NEVER decrease the coolant concentration below 40%. • Decreased engine coolant concentrations below 40% will


decrease the corrosion protection characteristics of the engine coolant and may cause engine damage.


• Decreased engine coolant concentrations below 40% will


decrease the freeze protection characteristics of the engine coolant and may cause engine damage.


• Refer to the chart on the coolant container to ensure the


coolant concentration in your vehicle will provide adequate protection at the temperatures in which you drive.


Vehicles driven year-round in non-extreme climates should use a 50/50
mixture of engine coolant and distilled water for optimum cooling system and engine protection.


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What you should know about fail-safe cooling (if equipped) If the engine coolant supply is depleted, this feature allows the vehicle to be driven temporarily before incremental component damage is incurred. The “fail-safe” distance depends on ambient temperatures, vehicle load and terrain. How fail-safe cooling works If the engine begins to overheat: • The engine coolant temperature gauge will move to the red (hot) area. • The


indicator light will


illuminate.


If the engine reaches a preset over-temperature condition, the engine will automatically switch to alternating cylinder operation. Each disabled cylinder acts as an air pump and cools the engine. When this occurs the vehicle will still operate. However: • The engine power will be limited. • The air conditioning system will be disabled. Continued operation will increase the engine temperature and the engine will completely shut down, causing steering and braking effort to increase. Once the engine temperature cools, the engine can be re-started. Take your vehicle to a service facility as soon as possible to minimize engine damage. When fail-safe mode is activated You have limited engine power when in the fail-safe mode, so drive the vehicle with caution. The vehicle will not be able to maintain high-speed operation and the engine will run rough. Remember that the engine is capable of completely shutting down automatically to prevent engine damage, therefore: 1. Pull off the road as soon as safely possible and turn off the engine. 2. Arrange for the vehicle to be taken to a service facility. 3. If this is not possible, wait a short period for the engine to cool. 4. Check the coolant level and replenish if low.


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Never remove the coolant reservoir cap while the engine is running or hot.


5. Re-start the engine and take your vehicle to a service facility. Driving the vehicle without repairing the engine problem increases the chance of engine damage. Take your vehicle to a service facility as soon as possible.


WHAT YOU SHOULD KNOW ABOUT AUTOMOTIVE FUELS


Important safety precautions


Do not overfill the fuel tank. The pressure in an overfilled tank may cause leakage and lead to fuel spray and fire.


The fuel system may be under pressure. If the fuel filler cap is venting vapor or if you hear a hissing sound, wait until it stops


before completely removing the fuel filler cap. Otherwise, fuel may spray out and injure you or others.


If you do not use the proper fuel filler cap, excessive pressure or vacuum in the fuel tank may damage the fuel system or cause the fuel cap to disengage in a collision, which may result in possible personal injury.


Automotive fuels can cause serious injury or death if misused or mishandled.


Gasoline may contain benzene, which is a cancer-causing agent.


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Observe the following guidelines when handling automotive fuel: • Extinguish all smoking materials


and any open flames before fueling your vehicle.


• Always turn off the vehicle before • Automotive fuels can be harmful


fueling.


or fatal if swallowed. Fuel such as gasoline is highly toxic and if swallowed can cause death or permanent injury. If fuel is swallowed, call a physician immediately, even if no symptoms are immediately apparent. The toxic effects of fuel may not be visible for hours. • Avoid inhaling fuel vapors. Inhaling too much fuel vapor of any kind


can lead to eye and respiratory tract irritation. In severe cases, excessive or prolonged breathing of fuel vapor can cause serious illness and permanent injury.


• Avoid getting fuel liquid in your eyes. If fuel is splashed in the eyes, remove contact lenses (if worn), flush with water for 15 minutes and seek medical attention. Failure to seek proper medical attention could lead to permanent injury.


• Fuels can also be harmful if absorbed through the skin. If fuel is


splashed on the skin and/or clothing, promptly remove contaminated clothing and wash skin thoroughly with soap and water. Repeated or prolonged skin contact with fuel liquid or vapor causes skin irritation. • Be particularly careful if you are taking “Antabuse” or other forms of disulfiram for the treatment of alcoholism. Breathing gasoline vapors, or skin contact could cause an adverse reaction. In sensitive individuals, serious personal injury or sickness may result. If fuel is splashed on the skin, promptly wash skin thoroughly with soap and water. Consult a physician immediately if you experience an adverse reaction.


When refueling always shut the engine off and never allow sparks or open flames near the filler neck. Never smoke while


refueling. Fuel vapor is extremely hazardous under certain conditions. Care should be taken to avoid inhaling excess fumes.


The flow of fuel through a fuel pump nozzle can produce static electricity, which can cause a fire if fuel is pumped into an


ungrounded fuel container.


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Use the following guidelines to avoid static build-up when filling an ungrounded fuel container: • Place approved fuel container on the ground. • DO NOT fill a fuel container while it is in the vehicle (including the • Keep the fuel pump nozzle in contact with the fuel container while • DO NOT use a device that would hold the fuel pump handle in the fill


cargo area).


filling.


position.


Fuel Filler Cap Your fuel tank filler cap has an indexed design with a 1/4 turn on/off feature. When fueling your vehicle: 1. Turn the engine off. 2. Carefully turn the filler cap counterclockwise 1/4 of a turn until it stops. 3. Pull to remove the cap from the fuel filler pipe. 4. To install the cap, align the tabs on the cap with the notches on the filler pipe. 5. Turn the filler cap clockwise 1/4 of a turn until it stops. If the the fuel filler cap may not be properly installed. Turn off the engine, remove the fuel filler cap, align the cap properly and reinstall it. If you must replace the fuel filler cap, replace it with a fuel filler cap that is designed for your vehicle. The customer warranty may be void for any damage to the fuel tank or fuel system if the correct genuine Ford or Motorcraft fuel filler cap is not used. The fuel system may be under pressure. If the fuel filler cap is venting vapor or if you hear a hissing sound, wait until it stops


indicator comes on and stays on after you start the engine,


before completely removing the fuel filler cap. Otherwise, fuel may spray out and injure you or others.


If you do not use the proper fuel filler cap, excessive pressure or vacuum in the fuel tank may damage the fuel system or cause the fuel cap to disengage in a collision, which may result in possible personal injury.


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Choosing the right fuel Use only UNLEADED FUEL. The use of leaded fuel is prohibited by law and could damage your vehicle. Your vehicle was not designed to use fuel or fuel additives with metallic compounds, including manganese-based additives. Studies indicate that these additives can cause your vehicle’s emission control system to deteriorate more rapidly. In Canada, premium grade fuel generally contains more metallic additives than regular fuel. We recommend using regular grade fuel. In Canada, many fuels contain metallic additives, but fuels free of such additives may be available; check with your local fuel dealer. Do not use fuel containing methanol. It can damage critical fuel system components. Repairs to correct the effects of using a fuel for which your vehicle was not designed may not be covered by your warranty.


Octane recommendations Your vehicle is designed to use “Regular” unleaded gasoline with pump (R+M)/2 octane rating of 87. We do not recommend the use of gasolines labeled as “Regular” that are sold with octane ratings of 86 or lower in high altitude areas. Do not be concerned if your engine sometimes knocks lightly. However, if it knocks heavily under most driving conditions while you are using fuel with the recommended octane rating, see your dealer or a qualified service technician to prevent any engine damage.


87(R+M)/2 METHOD


Fuel quality If you are experiencing starting, rough idle or hesitation driveability problems, try a different brand of unleaded gasoline. “Premium” unleaded gasoline is not recommended for vehicles designed to use “Regular” unleaded gasoline because it may cause these problems to become more pronounced. If the problems persist, see your dealer or a qualified service technician. It should not be necessary to add any aftermarket products to your fuel tank if you continue to use high quality fuel of the recommended octane rating. Aftermarket products could cause damage to the fuel system. Repairs to correct the effects of using an aftermarket product in your fuel may not be covered by your warranty.


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Many of the world’s automakers approved the World-wide Fuel Charter that recommends gasoline specifications to provide improved performance and emission control system protection for your vehicle. Gasolines that meet the World-wide Fuel Charter should be used when available. Ask your fuel supplier about gasolines that meet the World-wide Fuel Charter.


Cleaner air Ford endorses the use of reformulated “cleaner-burning” gasolines to improve air quality.


Running out of fuel Avoid running out of fuel because this situation may have an adverse affect on powertrain components. If you have run out of fuel: • You may need to cycle the ignition from OFF to ON several times after


refueling, to allow the fuel system to pump the fuel from the tank to the engine.


• The


indicator may come on. For more information on the Service engine soon indicator, refer to the Instrument Cluster chapter.


Fuel Filter For fuel filter replacement, see your dealer or a qualified service technician. Refer to the scheduled maintenance guide for the appropriate intervals for changing the fuel filter. Replace the fuel filter with an authorized Motorcraft part. The customer warranty may be void for any damage to the fuel system if an authorized Motorcraft fuel filter is not used.


ESSENTIALS OF GOOD FUEL ECONOMY


Measuring techniques Your best source of information about actual fuel economy is you, the driver. You must gather information as accurately and consistently as possible. Fuel expense, frequency of fill-ups or fuel gauge readings are NOT accurate as a measure of fuel economy. We do not recommend taking fuel economy measurements during the first 1,600 km (1,000 miles) of driving (engine break-in period). You will get a more accurate measurement after 3,000 km–5,000 km (2,000 miles-3,000 miles).


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Filling the tank The advertised fuel capacity of the fuel tank on your vehicle is equal to the rated refill capacity of the fuel tank as listed in the Refill capacities section of this chapter. The advertised capacity is the amount of the indicated capacity and the empty reserve combined. Indicated capacity is the difference in the amount of fuel in a full tank and a tank when the fuel gauge indicates empty. Empty reserve is the small amount of fuel remaining in the fuel tank after the fuel gauge indicates empty. The amount of usable fuel in the empty reserve varies and should not be relied upon to increase driving range. When refueling your vehicle after the fuel gauge indicates empty, you might not be able to refuel the full amount of the advertised capacity of the fuel tank due to the empty reserve still present in the tank. For consistent results when filling the fuel tank: • Turn the engine/ignition switch to the off position prior to refueling, • Use the same filling rate setting (low — medium — high) each time • Allow no more than 2 automatic click-offs when filling. • Always use fuel with the recommended octane rating. • Use a known quality gasoline, preferably a national brand. • Use the same side of the same pump and have the vehicle facing the • Have the vehicle loading and distribution the same every time. Your results will be most accurate if your filling method is consistent.


an error in the reading will result if the engine is left running.


same direction each time you fill up.


the tank is filled.


Calculating fuel economy 1. Fill the fuel tank completely and record the initial odometer reading (in kilometers or miles). 2. Each time you fill the tank, record the amount of fuel added (in liters or gallons). 3. After at least three to five tank fill-ups, fill the fuel tank and record the current odometer reading. 4. Subtract your initial odometer reading from the current odometer reading. 5. Follow one of the simple calculations in order to determine fuel economy:


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Calculation 1: Multiply liters used by 100, then divide by total kilometers traveled. Calculation 2: Divide total miles traveled by total gallons used.


Keep a record for at least one month and record the type of driving (city or highway). This will provide an accurate estimate of the vehicle’s fuel economy under current driving conditions. Additionally, keeping records during summer and winter will show how temperature impacts fuel economy. In general, lower temperatures give lower fuel economy.


fuel.


economy.


Driving style — good driving and fuel economy habits Give consideration to the lists that follow and you may be able to change a number of variables and improve your fuel economy. Habits • Smooth, moderate operation can yield up to 10% savings in fuel. • Steady speeds without stopping will usually give the best fuel • Idling for long periods of time (greater than one minute) may waste • Anticipate stopping; slowing down may eliminate the need to stop. • Sudden or hard accelerations may reduce fuel economy. • Slow down gradually. • Driving at reasonable speeds (traveling at 88 km/h [55 mph] uses 15% • Revving the engine before turning it off may reduce fuel economy. • Using the air conditioner or defroster may reduce fuel economy. • You may want to turn off the speed control in hilly terrain if unnecessary shifting between third and fourth gear occurs. Unnecessary shifting of this type could result in reduced fuel economy.


less fuel than traveling at 105 km/h [65 mph]).


reduce fuel economy.


• Warming up a vehicle on cold mornings is not required and may • Resting your foot on the brake pedal while driving may reduce fuel • Combine errands and minimize stop-and-go driving. Maintenance • Keep tires properly inflated and use only recommended size.


economy.


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Maintenance and Specifications • Operating a vehicle with the wheels out of alignment will reduce fuel • Use recommended engine oil. Refer to Lubricant specifications in • Perform all regularly scheduled maintenance items. Follow the


this chapter.


economy.


recommended maintenance schedule and owner maintenance checks found in your vehicle scheduled maintenance guide.


at any speed.


Conditions • Heavily loading a vehicle or towing a trailer may reduce fuel economy • Carrying unnecessary weight may reduce fuel economy (approximately • Adding certain accessories to your vehicle (for example bug


0.4 km/L [1 mpg] is lost for every 180 kg [400 lb] of weight carried).


driving on hilly terrain.


deflectors, rollbars/light bars, running boards, ski/luggage racks) may reduce fuel economy.


12–16 km (8–10 miles) of driving.


cruise gear and with steady pressure on the gas pedal.


• Using fuel blended with alcohol may lower fuel economy. • Fuel economy may decrease with lower temperatures during the first • Driving on flat terrain offers improved fuel economy as compared to • Transmissions give their best fuel economy when operated in the top • Close windows for high speed driving. EPA window sticker Every new vehicle should have the EPA window sticker. Contact your dealer if the window sticker is not supplied with your vehicle. The EPA window sticker should be your guide for the fuel economy comparisons with other vehicles. It is important to note the box in the lower left corner of the window sticker. These numbers represent the Range of L/100 km (MPG) expected on the vehicle under optimum conditions. Your fuel economy may vary depending upon the method of operation and conditions. NOTE: Vehicles over 8500 GVW (Gross Vehicle Weight) will not have fuel economy information printed on the EPA window sticker.


EMISSION CONTROL SYSTEM Your vehicle is equipped with various emission control components and a catalytic converter which will enable your vehicle to comply with


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applicable exhaust emission standards. To make sure that the catalytic converter and other emission control components continue to work properly: • Use only the specified fuel listed. • Avoid running out of fuel. • Do not turn off the ignition while your vehicle is moving, especially at • Have the items listed in your Scheduled Maintenance Guide


high speeds.


performed according to the specified schedule.


The scheduled maintenance items listed in the Scheduled Maintenance Guide are essential to the life and performance of your vehicle and to its emissions system. If other than Ford, Motorcraft or Ford-authorized parts are used for maintenance replacements or for service of components affecting emission control, such non-Ford parts should be equivalent to genuine Ford Motor Company parts in performance and durability.


Do not park, idle, or drive your vehicle in dry grass or other dry ground cover. The emission system heats up the engine


compartment and exhaust system, which can start a fire.


indicator, charging system warning light, fluid Illumination of the leaks, strange odors, smoke or loss of engine power, could indicate that the emission control system is not working properly.


Exhaust leaks may result in entry of harmful and potentially lethal fumes into the passenger compartment.


Do not make any unauthorized changes to your vehicle or engine. By law, vehicle owners and anyone who manufactures, repairs, services, sells, leases, trades vehicles, or supervises a fleet of vehicles are not permitted to intentionally remove an emission control device or prevent it from working. Information about your vehicle’s emission system is on the Vehicle Emission Control Information Decal located on or near the engine. This decal identifies engine displacement and gives some tune up specifications. Please consult your Warranty Guide for complete emission warranty information.


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On board diagnostics (OBD-II) Your vehicle is equipped with a computer that monitors the engine’s emission control system. This system is commonly known as the On Board Diagnostics System (OBD-II). This OBD-II system protects the environment by ensuring that your vehicle continues to meet government emission standards. The OBD-II system also assists the service technician in properly servicing your vehicle. When the Check engine/Service engine soon light illuminates, the OBD-II system has detected a malfunction. Temporary malfunctions may cause your Check engine/Service engine soon light to illuminate. Examples are: 1. The vehicle has run out of fuel. (The engine may misfire or run poorly.) 2. Poor fuel quality or water in the fuel. 3. The fuel cap may not have been securely tightened. These temporary malfunctions can be corrected by filling the fuel tank with good quality fuel and/or properly tightening the fuel cap. After three driving cycles without these or any other temporary malfunctions present, the Check engine/Service engine soon light should turn off. (A driving cycle consists of a cold engine startup followed by mixed city/highway driving.) No additional vehicle service is required. If the Check engine/Service engine soon light remains on, have your vehicle serviced at the first available opportunity.


Readiness for Inspection/Maintenance (I/M) testing In some localities, it may be a legal requirement to pass an I/M test of the on-board diagnostics system. If your Check engine/Service engine soon light is on, refer to the description in the Warning lights and chimes section of the Instrument Cluster chapter. Your vehicle may not pass the I/M test with the Check engine/Service engine soon light on. If the vehicle’s powertrain system or its battery has just been serviced, the on-board diagnostics system is reset to a “not ready for I/M test” condition. To ready the on-board diagnostics system for I/M testing, a minimum of 30 minutes of city and highway driving is necessary as described below: • First, at least 10 minutes of driving on an expressway or highway. • Next, at least 20 minutes driving in stop-and-go, city-type traffic with


at least four idle periods.


Allow the vehicle to sit for at least eight hours without starting the engine. Then, start the engine and complete the above driving cycle. The


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engine must warm up to its normal operating temperature. Once started, do not turn off the engine until the above driving cycle is complete. CHECKING AND ADDING POWER STEERING FLUID Check the power steering fluid. Refer to the scheduled maintenance guide for the service interval schedules. If adding fluid is necessary, use only MERCON威 ATF.


Check the fluid level when it is at ambient temperature, 20° – 80° F (-7° – 25° C): 1. Check the fluid level on the dipstick. It should be between the arrows in the FULL COLD range. Do not add fluid if the level is within this range. 2. If the fluid level is low, start the engine. 3. While the engine idles, turn the steering wheel left and right several times. 4. Turn the engine off.


For E-450 and E-550 vehicles with the Hydro-Boost Brake System, do not press the brake pedal after the engine has been


turned off.


5. Recheck the fluid level on the dipstick. Do not add fluid if the level is between the arrows in the FULL COLD range.


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6. If the fluid is low, add fluid in small amounts, continuously checking the level until it reaches the FULL COLD range. Be sure to put the dipstick back in the reservoir. BRAKE FLUID RESERVOIR The fluid level will drop slowly as the brakes wear, and will rise when the brake components are replaced. Fluid levels below the “MAX” line that do not trigger the brake system warning lamp are within the normal operating range, there is no need to add fluid. If the fluid levels are outside of the normal operating range, the performance of your brake system could be compromised, seek service from your dealer immediately. DRIVELINE UNIVERSAL JOINT AND SLIP YOKE Your vehicle may be equipped with universal joints that require lubrication. Refer to the Scheduled Maintenance Guide for maintenance intervals. If the original universal joints are replaced with universal joints equipped with grease fittings, lubrication will also be necessary. TRANSMISSION FLUID


MAX


Checking automatic transmission fluid (if equipped) Refer to your Scheduled Maintenance Guide for scheduled intervals for fluid checks and changes. Your transmission does not consume fluid. However, the fluid level should be checked if the transmission is not working properly, i.e., if the transmission slips or shifts slowly or if you notice some sign of fluid leakage. Automatic transmission fluid expands when warmed. To obtain an accurate fluid check, drive the vehicle until it is at normal operating temperature (approximately 30 km [20 miles]). If your vehicle has been operated for an extended period at high speeds, in city traffic during hot weather or pulling a trailer, the vehicle should be turned off for about 30
minutes to allow fluid to cool before checking. 1. Drive the vehicle 30 km (20 miles) or until it reaches normal operating temperature. 2. Park the vehicle on a level surface and engage the parking brake. 3. With the parking brake engaged and your foot on the brake pedal, start the engine and move the gearshift lever through all of the gear ranges. Allow sufficient time for each gear to engage.


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4. Latch the gearshift lever in P (Park) and leave the engine running. 5. Remove the dipstick, wiping it clean with a clean, dry lint free rag. If necessary, refer to Identifying components in the engine compartment in this chapter for the location of the dipstick. 6. Install the dipstick making sure it is fully seated in the filler tube. 7. Remove the dipstick and inspect the fluid level. The fluid should be in the designated area for normal operating temperature or ambient temperature. Low fluid level Do not drive the vehicle if the fluid level is at the bottom of the dipstick and the ambient temperature is above 10°C (50°F). Correct fluid level The transmission fluid should be checked at normal operating temperature 66°C-77°C (150°F-170°F) on a level surface. The normal operating temperature can be reached after approximately 30 km (20 miles) of driving. You can check the fluid without driving if the ambient temperature is above 10°C (50°F). However, if fluid is added at this time, an overfill condition could result when the vehicle reaches normal operating temperature. The transmission fluid should be in this range if at normal operating temperature (66°C-77°C [150°F-170°F]). The transmission fluid should be in this range if at ambient temperature (10°C-35°C [50°F-95°F]).


High fluid level Fluid levels above the safe range may result in transmission failure. An overfill condition of transmission fluid may cause shift and/or engagement concerns and/or possible damage. High fluid levels can be caused by an overheating condition.


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Adjusting automatic transmission fluid levels Before adding any fluid, make sure the correct type is used. The type of fluid used is normally indicated on the dipstick and also in the Lubricant specifications section in this chapter. Use of a non-approved automatic transmission fluid may cause internal transmission component damage. If necessary, add fluid in 250 ml (1/2 pint) increments through the filler tube until the level is correct. If an overfill occurs, excess fluid should be removed by a qualified technician. An overfill condition of transmission fluid may cause shift and/or engagement concerns and/or possible damage. Do not use supplemental transmission fluid additives, treatments or cleaning agents. The use of these materials may affect transmission operation and result in damage to internal transmission components.


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Automatic transmission fluid filter (if equipped) The TorqShift automatic transmission is equipped with a serviceable external fluid filter mounted on the driver’s side of the transmission. Refer to the Scheduled Maintenance Guide for service intervals.


To replace the transmission filter: 1. Shut off the engine. 2. Unscrew remote filter housing. 3. Replace filter with a new authorized Motorcraft filter element. Refer to the Motorcraft part numbers chart in this chapter. 4. Reinstall housing and check transmission fluid level using procedure in this section.


AIR FILTER MAINTENANCE Refer to the scheduled maintenance guide for the appropriate intervals for changing the air filter element. When changing the air filter element, use only the Motorcraft air filter element listed. Refer to Motorcraft part numbers in this chapter. Note: Do not start your engine with the air cleaner removed and do not remove it while the engine is running.


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Changing the air filter element 1. Disconnect the fresh air inlet tube from the radiator support. 2. Open the clamp that secures the two halves of the air filter housing together.


3. Carefully separate the two halves of the air filter housing. 4. Remove the air filter element from the housing.


5. Install a new air filter element. Be careful not to crimp the filter element edges between the air filter housing. This could cause filter damage and allow unfiltered air to enter the engine if not properly seated. 6. Replace the two halves of the air filter housing and secure the clamp. 7. Connect the fresh air inlet tube to the radiator support.


INFORMATION ABOUT UNIFORM TIRE QUALITY GRADING New vehicles are fitted with tires that have a rating on them called Tire Quality Grades. The Quality grades can be found where applicable on the tire sidewall between tread shoulder and maximum section width. For example: • Treadwear 200 Traction AA Temperature A


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These Tire Quality Grades are determined by standards that the United States Department of Transportation has set. Tire Quality Grades apply to new pneumatic tires for use on passenger cars. They do not apply to deep tread, winter-type snow tires, space-saver or temporary use spare tires, tires with nominal rim diameters of 10 to 12 inches or limited production tires as defined in Title 49 Code of Federal Regulations Part 575.104(c)(2). U.S. Department of Transportation-Tire quality grades: The U.S. Department of Transportation requires Ford to give you the following information about tire grades exactly as the government has written it.


Treadwear The treadwear grade is a comparative rating based on the wear rate of the tire when tested under controlled conditions on a specified government test course. For example, a tire graded 150 would wear one and one-half (1 1/2) times as well on the government course as a tire graded 100. The relative performance of tires depends upon the actual conditions of their use, however, and may depart significantly from the norm due to variations in driving habits, service practices, and differences in road characteristics and climate.


Traction AA A B C The traction grades, from highest to lowest are AA, A, B, and C. The grades represent the tire’s ability to stop on wet pavement as measured under controlled conditions on specified government test surfaces of asphalt and concrete. A tire marked C may have poor traction performance.


The traction grade assigned to this tire is based on straight-ahead braking traction tests, and does not include


acceleration, cornering, hydroplaning or peak traction characteristics.


Temperature A B C The temperature grades are A (the highest), B and C, representing the tire’s resistance to the generation of heat and its ability to dissipate heat when tested under controlled conditions on a specified indoor laboratory test wheel. Sustained high temperature can cause the material of the tire to degenerate and reduce tire life, and excessive temperature can lead to sudden tire failure. The grade C corresponds to a level of performance which all passenger car tires must meet under the Federal Motor Vehicle


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Safety Standard No. 109. Grades B and A represent higher levels of performance on the laboratory test wheel than the minimum required by law.


The temperature grade for this tire is established for a tire that is properly inflated and not overloaded. Excessive speed,


underinflation, or excessive loading, either separately or in combination, can cause heat buildup and possible tire failure.


TIRES Tires are designed to give many thousands of miles of service, but they must be maintained in order to get the maximum benefit from them.


Glossary of tire terminology • Tire label: A label showing the OE (Original Equipment) tire sizes, recommended inflation pressure and the maximum weight the vehicle can carry.


• Tire Identification Number (TIN): A number on the sidewall of


each tire providing information about the tire brand and manufacturing plant, tire size and date of manufacture.


• Inflation pressure: A measure of the amount of air in a tire. • Standard load: A class of P-metric or Metric tires designed to carry a maximum load at 35 psi [37 psi (2.5 bar) for Metric tires]. Increasing the inflation pressure beyond this pressure will not increase the tire’s load carrying capability.


• Extra load: A class of P-metric or Metric tires designed to carry a heavier maximum load at 41 psi [43 psi (2.9 bar) for Metric tires]. Increasing the inflation pressure beyond this pressure will not increase the tire’s load carrying capability.


• kPa: Kilopascal, a metric unit of air pressure. • PSI: Pounds per square inch, a standard unit of air pressure. • B-pillar: The structural member at the side of the vehicle behind the • Bead area of the tire: Area of the tire next to the rim. • Sidewall of the tire: Area between the bead area and the tread. • Tread area of the tire: Area of the perimeter of the tire that • Rim: The metal support (wheel) for a tire or a tire and tube assembly


contacts the road when mounted on the vehicle.


front door.


upon which the tire beads are seated.


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INFORMATION CONTAINED ON THE TIRE SIDEWALL Federal law requires tire manufacturers to place standardized information on the sidewall of all tires. This information identifies and describes the fundamental characteristics of the tire and also provides a U.S. DOT Tire Identification Number for safety standard certification and in case of a recall.


Information on “P” type tires P215/65R15 95H is an example of a tire size, load index and speed rating. The definitions of these items are listed below. (Note that the tire size, load index and speed rating for your vehicle may be different from this example.) 1. P: Indicates a tire, designated by the Tire and Rim Association (T&RA), that may be used for service on cars, SUVs, minivans and light trucks. Note: If your tire size does not begin with a letter this may mean it is designated by either ETRTO (European Tire and Rim Technical Organization) or JATMA (Japan Tire Manufacturing Association). 2. 215: Indicates the nominal width of the tire in millimeters from sidewall edge to sidewall edge. In general, the larger the number, the wider the tire. 3. 65: Indicates the aspect ratio which gives the tire’s ratio of height to width. 4. R: Indicates a “radial” type tire. 5. 15: Indicates the wheel or rim diameter in inches. If you change your wheel size, you will have to purchase new tires to match the new wheel diameter. 6. 95: Indicates the tire’s load index. It is an index that relates to how much weight a tire can carry. You may find this information in your owner’s guide. If not, contact a local tire dealer. Note: You may not find this information on all tires because it is not required by federal law.


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7. H: Indicates the tire’s speed rating. The speed rating denotes the speed at which a tire is designed to be driven for extended periods of time under a standard condition of load and inflation pressure. The tires on your vehicle may operate at different conditions for load and inflation pressure. These speed ratings may need to be adjusted for the difference in conditions. The ratings range from 99 mph (159 km/h) to 186 mph (299 km/h). These ratings are listed in the following chart. Note: You may not find this information on all tires because it is not required by federal law.


Letter rating


Speed rating - mph (km/h)


99 mph (159 km/h) 106 mph (171 km/h) 112 mph (180 km/h) 118 mph (190 km/h) 124 mph (200 km/h) 130 mph (210 km/h) 149 mph (240 km/h) 168 mph (270 km/h) 186 mph (299 km/h) Note: For tires with a maximum speed capability over 149 mph (240 km/h), tire manufacturers sometimes use the letters ZR. For those with a maximum speed capability over 186 mph (299 km/h), tire manufacturers always use the letters ZR. 8. U.S. DOT Tire Identification Number (TIN): This begins with the letters “DOT” and indicates that the tire meets all federal standards. The next two numbers or letters are the plant code designating where it was manufactured, the next two are the tire size code and the last four numbers represent the week and year the tire was built. For example, the numbers 317 mean the 31st week of 1997. After 2000 the numbers go to four digits. For example, 2501 means the 25th week of 2001. The numbers in between are identification codes used for traceability. This information is used to contact customers if a tire defect requires a recall. 9. M+S or M/S: Mud and Snow. or AT: All Terrain. or AS: All Season. 10. Tire Ply Composition and Material Used: Indicates the number of plies or the number of layers of rubber-coated fabric in the tire tread and sidewall. Tire manufacturers also must indicate the ply materials in the tire and the sidewall, which include steel, nylon, polyester, and others.


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11. Maximum Load: Indicates the maximum load in kilograms and pounds that can be carried by the tire. Refer to the tire label or the safety certification label, which is located on the B-Pillar or the edge of the driver’s door, for the correct tire pressure for your vehicle 12. Treadwear, Traction and Temperature Grades • Treadwear: The treadwear grade is a comparative rating based on the


wear rate of the tire when tested under controlled conditions on a specified government test course. For example, a tire graded 150
would wear one and one-half (11⁄2) times as well on the government course as a tire graded 100. • Traction: The traction grades, from highest to lowest are AA, A, B,


and C. The grades represent the tire’s ability to stop on wet pavement as measured under controlled conditions on specified government test surfaces of asphalt and concrete. A tire marked C may have poor traction performance.


• Temperature: The temperature grades are A (the highest), B and C, representing the tire’s resistance to the generation of heat and its ability to dissipate heat when tested under controlled conditions on a specified indoor laboratory test wheel.


13. Maximum Permissible Inflation Pressure: Indicates the tire manufacturers’ maximum permissible pressure and/or the pressure at which the maximum load can be carried by the tire. This pressure is normally higher than the manufacturer’s recommended cold inflation pressure which can be found on either the tire label or certification label which is located on the B-Pillar or the edge of the driver’s door. The cold inflation pressure should never be set lower than the recommended pressure on the vehicle label. The tire suppliers may have additional markings, notes or warnings such as standard load, radial tubeless, etc.


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Additional information contained on the tire sidewall for “LT” type tires “LT” type tires have some additional information beyond those of “P” type tires; these differences are described below: 1. LT: Indicates a tire, designated by the Tire and Rim Association (T&RA), that is intended for service on light trucks. 2. Load Range/Load Inflation Limits: Indicates the tire’s load-carrying capabilities and its inflation limits. 3. Maximum Load Dual lbs. (kg) at psi (kPa) cold: Indicates the maximum load and tire pressure when the tire is used as a dual; defined as four tires on the rear axle (a total of six or more tires on the vehicle). 4. Maximum Load Single lbs. (kg) at psi (kPa) cold: Indicates the maximum load and tire pressure when the tire is used as a single; defined as two tires (total) on the rear axle.


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Information on “T” type tires T145/80D16 is an example of a tire size. Note: The temporary tire size for your vehicle may be different from this example. 1. T: Indicates a type of tire, designated by the Tire and Rim Association (T&RA), that is intended for temporary service on cars, SUVs, minivans and light trucks. 2. 145: Indicates the nominal width of the tire in millimeters from sidewall edge to sidewall edge. In general, the larger the number, the wider the tire. 3. 80: Indicates the aspect ratio which gives the tire’s ratio of height to width. Numbers of 70 or lower indicate a short sidewall. 4. D: Indicates a “diagonal” type tire. R: Indicates a “radial” type tire. 5. 16: Indicates the wheel or rim diameter in inches. If you change your wheel size, you will have to purchase new tires to match the new wheel diameter.


Location of the tire label You will find a tire label containing tire inflation pressure by tire size and other important information located on the B-Pillar or the edge of the driver’s door.


TIRE CARE Improper or inadequate vehicle maintenance can also cause tires to wear abnormally. Here are some of the important maintenance items:


Inflating your tires Use a tire gauge to check the tire inflation pressure, including the spare, at least monthly and before long trips. You are strongly urged to buy a reliable tire pressure gauge, as automatic service station gauges may be


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inaccurate. Ford recommends the use of a digital or dial type tire pressure gauge rather than a stick type tire pressure gauge. Use the recommended cold inflation pressure for optimum tire performance and wear. Under-inflation or over-inflation may cause uneven treadwear patterns.


Under-inflation is the most common cause of tire failures and may result in severe tire cracking, tread separation or ⬙blowout⬙,


with unexpected loss of vehicle control and increased risk of injury. Under-inflation increases sidewall flexing and rolling resistance, resulting in heat buildup and internal damage to the tire. It also may result in unnecessary tire stress, irregular wear, loss of vehicle control and accidents. A tire can lose up to half of its air pressure and not appear to be flat!


When weather temperature changes occur, tire inflation pressures also change. A 10° F (6° C) temperature drop can cause a corresponding drop of 1 psi (7 kPa) in inflation pressure. Check your tire pressures frequently and adjust them to the proper pressure which can be found on the tire label or certification label. If you are checking tire pressure when the tire is hot, (i.e. driven more than 1 mile [1.6 km]), never “bleed” or reduce air pressure. The tires are hot from driving and it is normal for pressures to increase above recommended cold pressures. A hot tire at or below recommended cold inflation pressure could be significantly under-inflated. To check the pressure in your tire(s): 1. Make sure the tires are cool, meaning they are not hot from driving even a mile. Note: If you have to drive a distance to get air for your tire(s), check and record the tire pressure first and add the appropriate air pressure when you get to the pump. It is normal for tires to heat up and the air pressure inside to go up as you drive. Never “bleed” or reduce air pressure when tires are hot. 2. Remove the cap from the valve on one tire, then firmly press the tire gauge onto the valve and measure the pressure. 3. Add enough air to reach the recommended air pressure Note: If you overfill the tire, release air by pushing on the metal stem in the center of the valve. Then recheck the pressure with your tire gauge. 4. Replace the valve cap.


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5. Repeat this procedure for each tire, including the spare. Note: Some spare tires require higher inflation pressure than the other tires. Check the tire label on the B pillar or the edge of the driver’s door for the recommended spare tire pressure. 6. Visually inspect the tires to make sure there are no nails or other objects embedded that could poke a hole in the tire and cause an air leak. 7. Check the sidewalls to make sure there are no gouges, cuts or bulges.


Tire inflation information All tires with Steel Carcass Plies (if equipped): This type of tire utilizes steel cords in the sidewalls. As such, they cannot be treated like normal light truck tires. Tire service, including adjusting tire pressure, must be performed by personnel trained, supervised and equipped according to Federal Occupational Safety and Health Administration (OSHA) regulations. For example, during any procedure involving tire inflation, the technician or individual must utilize a remote inflation device, and ensure that all persons are clear of the trajectory area.


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WARNING An inflated tire and rim can be very dangerous if improperly used, serviced or maintained. To reduce the risk of


serious injury, never attempt to re-inflate a tire which has been run flat or seriously under-inflated without first removing the tire from the wheel assembly for inspection. Do not attempt to add air to tires or replace tires or wheels without first taking precautions to protect persons and property.


Tire and wheel alignment A bad jolt from hitting a curb or pothole can cause the front end of your vehicle to become misaligned or cause damage to your tires. If your vehicle seems to pull to one side when you’re driving, the wheels may be out of alignment. Have a qualified technician at a Ford or Lincoln/Mercury dealer check the wheel alignment periodically. Wheel misalignment in the front or the rear can cause uneven and rapid treadwear of your tires and should be corrected by a qualified technician at a Ford or Lincoln/Mercury dealer. Front wheel drive (FWD) vehicles and those with an independent rear suspension (if equipped) may require alignment of all four wheels. The tires should also be balanced periodically. An unbalanced tire and wheel assembly may result in irregular tire wear.


Tire rotation Rotating your tires at the recommended interval (as indicated in the Scheduled Maintenance Guide that comes with your vehicle) will help your tires wear more evenly, providing better tire performance and longer tire life. Unless otherwise specified, rotate the tires approximately every 5,000 miles (8,000 km).


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Maintenance and Specifications • Front Wheel Drive (FWD)


vehicles (front tires at top of diagram)


• Rear Wheel Drive (RWD)


vehicles/Four Wheel Drive (4WD) vehicles (front tires at top of diagram)


Sometimes irregular tire wear can be corrected by rotating the tires.


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Note: If your tires show uneven wear ask a qualified technician at a Ford or Lincoln/Mercury dealership to check for and correct any wheel misalignment, tire imbalance or mechanical problem involved before tire rotation. Note: Your vehicle may be equipped with a dissimilar spare tire/wheel. A dissimilar spare tire/wheel is defined as a spare tire and/or wheel that is different in brand, size or appearance from the road tires and wheels. If you have a dissimilar spare tire/wheel it is intended for temporary use only and should not be used in a tire rotation. Note: After having your tires rotated, inflation pressure must be checked and adjusted to the vehicle requirements.


Tire wear Measure and inspect the tire tread on all your tires periodically. Advanced and unusual tire wear can reduce the ability of tread to grip the road in adverse (wet, snowy, etc.) conditions. Visually check your tires for uneven wear, looking for high and low areas or unusually smooth areas. Also check for signs of tire damage. When the tread is worn down to 1/16th of an inch (2 mm), tires must be replaced to prevent your vehicle from skidding and hydroplaning. Built-in treadwear indicators, or “wear bars”, which look like narrow strips of smooth rubber across the tread will appear on the tire when the tread is worn down to 1/16th of an inch (2 mm). When you see these “wear bars”, the tire is worn out and should be replaced. Inspect your tires frequently for any of the following conditions and replace them if one or more of the following conditions exist: • Fabric showing through the tire rubber • Bulges in the tread or sidewalls • Cracks or cuts on the sidewalls • Cracks in the tread groove • Impact damage resulting from use • Separation in the tread • Separation in the sidewall • Severe abrasion on the sidewall


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If your vehicle has a leak in the exhaust system, a road tire or the spare tire may be exposed to hot exhaust temperatures requiring the tire to be replaced.


Tire Replacement Requirements Your vehicle is equipped with tires designed to provide a safe ride and handling capability.


Only use replacement tires and wheels that are the same size and type (such as P-metric versus LT-metric or all-season versus


all-terrain) as those originally provided by Ford. Use of any tire or wheel not recommended by Ford can affect the safety and performance of your vehicle, which could result in an increased risk of loss of vehicle control, vehicle rollover, personal injury and death. Additionally the use of non-recommended tires and wheels could cause steering, suspension, axle or transfer case/power transfer unit failure. If you have questions regarding tire replacement, see an authorized Ford or Lincoln-Mercury dealer.


Make sure all tires and wheels on the vehicle are of the same size, type, tread design, brand, load-carrying capacity and speed rating because it can affect the safety and performance of your vehicle, which could result in an increased risk of loss of vehicle control, vehicle rollover, personal injury and death. You should replace the spare tire when you replace the other road tires due to the aging of the spare tire.


Safety practices Driving habits have a great deal to do with your tire mileage and safety. • Observe posted speed limits • Avoid fast starts, stops and turns • Avoid potholes and objects on the road • Do not run over curbs or hit the tire against a curb when parking If your vehicle is stuck in snow, mud, sand, etc., do not rapidly spin the tires; spinning the tires can tear the tire and cause an explosion. A tire can explode in as little as three to five seconds.


Tire explosions can cause death, personal injury or property damage. Do not allow anyone to stand near, directly ahead or


behind the spinning tire.


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Never spin the tires in excess of the 35 mph (55 km/h) point indicated on the speedometer.


Highway hazards No matter how carefully you drive there’s always the possibility that you may eventually have a flat tire on the highway. Drive slowly to the closest safe area out of traffic. This may further damage the flat tire, but your safety is more important. If you feel a sudden vibration or ride disturbance while driving, or you suspect your tire or vehicle has been damaged, immediately reduce your speed. Drive with caution until you can safely pull off the road. Stop and inspect the tires for damage. If a tire is under-inflated or damaged, deflate it, remove wheel and replace it with your spare tire and wheel. If you cannot detect a cause, have the vehicle towed to the nearest repair facility or tire dealer to have the vehicle inspected.


SNOW TIRES AND CHAINS


Snow tires must be the same size and grade as the tires you currently have on your vehicle.


The tires on your vehicle have all weather treads to provide traction in rain and snow. However, in some climates, you may need to use snow tires and chains. If you need to use chains, it is recommended that steel wheels (of the same size and specifications) be used, as chains may chip aluminum wheels. Follow these guidelines when using snow tires and chains: • Use only SAE Class S chains. • Install chains securely, verifying that the chains do not touch any • Drive cautiously. If you hear the chains rub or bang against your


wiring, brake lines or fuel lines.


vehicle, stop and re-tighten the chains. If this does not work, remove the chains to prevent damage to your vehicle.


• If possible, avoid fully loading your vehicle. • Remove the tire chains when they are no longer needed. Do not use • The suspension insulation and bumpers will help prevent vehicle damage. Do not remove these components from your vehicle when using snow tires and chains.


tire chains on dry roads.


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MOTORCRAFT PART NUMBERS Component1


4.6L V8 engine 5.4L V8 engine 6.8L V10


engine FA-1634
BXT-65-750





BH-65DC


BH-65DC


BH-65DC


BXT-65-750


FG-872
FL-820-S


FG-872
FL-820-S


FA-1634
BXT-65-750


FG-872
FL-820-S


Air filter element FA-1634
Battery (standard) Battery (auxiliary) Fuel filter Oil filter PCV valve Spark plugs-platinum Automatic transmission filter 4
1Refer to the Power Stroke Direct Injection Turbo Diesel Owner’s Guide Supplement for Motorcraft diesel engine service part numbers. 2The PCV valve is a critical emission component. It is one of the items listed in the Scheduled Maintenance Guide and is essential to the life and performance of your vehicle and to its emissions system. For PCV valve replacement, see your dealer or a qualified service technician. Refer to the Scheduled Maintenance Guide for the appropriate intervals for changing the PCV valve. Replace the PCV valve with one that meets Ford material and design specifications for your vehicle, such as a Motorcraft or equivalent replacement part. The customer warranty may be void for any damage to the emissions system if such a PCV valve is not used. 3For spark plug replacement, see your dealer or a qualified service technician. Refer to the Scheduled Maintenance Guide for the appropriate intervals for changing the spark plugs. Replace the spark plugs with ones that meet Ford material and design specifications for your vehicle, such as Motorcraft or equivalent replacement parts. The customer warranty may be void for any damage to the engine if such spark plugs are not used.


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Refer to Vehicle Emissions Control Information (VECI) decal for spark plug gap information. 4Only available with 6.0L Diesel engine/TorqShift transmission. Part number is FT-145.


REFILL CAPACITIES Fluid


All


Capacity


Application


Fill to line on reservoir


Ford Part Name Motorcraft High Performance DOT 3 Motor Vehicle Brake Fluid Motorcraft SAE 5W-20 Premium Synthetic Blend Motor Oil (US) Motorcraft SAE 5W-20 Super Premium Motor Oil (Canada) Refer to the Power Stroke Direct Injection Turbo Diesel Owner’s Guide Supplement.


5.7L (6.0
quarts)


All


Brake fluid


Engine oil-gasoline engine (includes filter change)9


Engine oil-diesel engine (includes filter change)


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Fluid


Engine coolant-gasoline engine 1


Ford Part Name Motorcraft Premium Gold Engine Coolant (yellow-colored)


Application


Capacity


4.6L V8 engine


4.6L V8 engine with aux rear heat


5.4L V8 engine


5.4L V8 engine with aux rear heat


23.7L (25.0
quarts) 1 row – 22.6L (23.8 quarts)8
25.7L (27.2
quarts) 1 row – 24.6L (26.0 quarts)8
27.4L (29.0
quarts) 1 row – 26.3L (27.8 quarts)8
29.4L (31.0
quarts) 1 row – 28.3L (29.8 quarts)8


6.8L V10 engine 29.0L (30.6


quarts) 1 row – 27.9L (29.4 quarts)8
31.0L (32.8
quarts) 1 row – 29.9L (31.6 quarts)8
Refer to the Power Stroke Direct Injection Turbo Diesel Owner’s Guide Supplement. 1


6.8L V10 engine with aux rear heat


Motorcraft MERCON威 ATF


All


Keep in FULL range on dipstick


Engine coolant-diesel engine Power steering fluid


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Fluid


Rear axle4


Maintenance and Specifications


Ford Part Name Motorcraft SAE 75W-90 Fuel Efficient High Performance Synthetic rear axle lubricant2
SAE 75W-140
Synthetic Rear Axle Lubricant 2


SAE 90 Hypoid Gear Oil (axles shown are all limited slip) 4


SAE 80W-90
Premium Rear Axle Lubricant


Application


Capacity


2.6 (5.5 pints) 3


Visteon 8.8/9.75
inch conventional and Traction-Lok


Dana M70HD (M273HD) E-350 DSO Dana M60
(M248) E-250/350 DSO limited slip 4
Dana Limited Slip Axles M60 (M248) E250/350
M70FF (M267FF) E-350
M70HD (M273HD) E-450
Dana conventional axles M60 (M248) E250/350
M70FF (M267FF) E-350
M70HD (M273HD) E-450


3.5L (7.4 pints)


3.0L (6.3 pints)


3.0L (6.3 pints)


3.2L (6.8 pints)


3.9L (8.3 pints)


3.0L (6.3 pints)


3.1L (6.6 pints)


3.9L (8.3 pints)


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Fluid


Fuel tank


Ford Part Name N/A


Transmission fluid 6


Motorcraft MERCON威V ATF Motorcraft MERCON 威 ATF


Windshield washer fluid


Motorcraft MERCON威 SP ATF Motorcraft Premium Windshield Washer Concentrate


Application


Capacity


All regular and extended length vans and wagons 138 inch wheelbase (except E-Super Duty) 158 inch wheelbase (except E-Super Duty) 176 inch wheelbase (except E-Super Duty) 158 inch and 176 inch wheelbase (E-Super Duty) Automatic (4R70/75 E-W)


Automatic (4R100 except E-450) Automatic (4R100 E-450) TorqShift (5–speed)


All


132.4L (35.0
gallons)


140.0L (37.0
gallons)


140.0L (37.0
gallons) 5


140.0L (37.0
gallons)


208.0L (55 .0
gallons)


13.2L (13.9
quarts) 7


16.1L (17.0
quarts) 7


16.7L (17.7
quarts) 7
16.6L (17.5
quarts) 7


4.0L (4.2
quarts)


1Add the coolant type originally equipped in your vehicle. 2If your vehicle’s rear axle is filled with a synthetic rear axle lubricant it is considered lubricated for life. These lubricants do not need to be


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Maintenance and Specifications


checked or changed unless a leak is suspected, service is required or the axle assembly has been submerged in water. The axle lubricant should be changed any time the rear axle has been submerged in water. Fill 6 mm to 14 mm (1/4 inch to 9/16 inch) below bottom of fill hole. Add 118 ml (4 oz.) of Additive Friction Modifier XL-3 or equivalent meeting Ford specification EST-M2C118–A, for complete refill of 8.8 inch and 9.75 inch Traction-Lok axles. 3Fill Dana rear axles to 6 mm to 19 mm (1/4 inch to 3/4 inch) below bottom of fill hole. Fill Visteon axles 6 mm to 14 mm (1/4 inch to 9/16
inch) below bottom of fill hole. 4Visteon Traction-Lok axles require 118 ml (4 oz.) of Additive Friction Modifier XL—3 or equivalent meeting Ford specification EST-M2C118–A. Dana limited-slip axles (E250/350/450/550) require 237ml (8 oz.) of Additive Friction Modifier C8AZ—19B546–A or equivalent meeting Ford specification EST-M2C118-A. 5Optional fuel tank 208L (55 gallon). 6Ensure the correct automatic transmission fluid is used. Transmission fluid requirements are indicated on the dipstick or on the dipstick handle. Check the container to verify the fluid being added is of the correct type. Refer to your Scheduled Maintenance Guide to determine the correct service interval. Some transmission fluids may be labeled as dual usage, such as MERCON威 and MERCON威 V. These dual usage fluids are not to be used in an automatic transmission that requires use of the MERCON威 type fluid. However, these dual usage fluids may be used in transmissions that require the MERCON威 V type fluid. MERCON威, MERCON威 V and MERCON威 SP are not interchangeable. DO NOT mix MERCON威, MERCON威 V and MERCON威 SP. Use of dual usage fluids in an automatic transmission application requiring MERCON威 SP may cause transmission damage. Use of a transmission fluid other than the recommended fluid may cause transmission damage. 7Indicates only approximate dry-fill capacity. Some applications may vary based on cooler size, if equipped with an in-tank cooler, if equipped an oil to air cooler and if equipped with a remote filter assembly. The amount of transmission fluid and fluid level should be set by the indication on the dipstick’s normal operating range. 8If your vehicle is equipped with a single row radiator, there will be a label on the top side of the radiator indicating “1 Row Radiator”.


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Maintenance and Specifications


9Use of synthetic or synthetic blend motor oil is not mandatory. Engine oil need only meet the requirements of Ford specification WSS-M2C153–H and the API Certification mark.


Brake fluid


LUBRICANT SPECIFICATIONS Item


Ford part name Motorcraft High Performance DOT 3 Motor Vehicle Brake Fluid Silicone Door weatherstrips Lubricant Engine coolant Motorcraft


Premium Gold Engine Coolant (yellow-colored)


Ford part number PM-1


Ford specification ESA-M6C25-A and DOT 3


XL-6


ESR-M13P4-A


WSS -M97B51-A1


VC-7-A (U.S., except CA and OR), VC-7-B (CA and OR only) XO-5W20-QSP (US) CXO-5W20– LSP12 (Canada)


WSS-M2C153- HWSS-M2C930-A with API Certification Mark


Motorcraft SAE 5W-20 Premium Synthetic Blend Motor Oil (US) Motorcraft SAE 5W-20 Super Premium Motor Oil (Canada) Refer to the Power Stroke Direct Injection Turbo Diesel Owner’s Guide Supplement. Motorcraft Multi-Purpose Grease


ESR-M1C159-A or ESB-M1C93–B


XG–4 or XL-5


Engine oil-gasoline engine


Engine oil-diesel engine Hinges, latches, Striker plates, fuel filler door hinge, and seat tracks


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Maintenance and Specifications


Item


Lock cylinders


Power steering fluid Automatic transmission (4R100) 1
Automatic transmission (4R70/75 E-W) 1
Automatic transmission TorqShift (5–speed)1
Disc brake caliper rails


Parking brake assembly (E-450
Super Duty)


Visteon conventional and Traction-Lok axles 2


Ford part name Motorcraft Penetrating and Lock Lubricant Motorcraft MERCON威 ATF Motorcraft MERCON威 ATF


Motorcraft MERCON威V ATF Motorcraft MERCON威 SP ATF


Motorcraft Silicone Brake Caliper Grease and Dielectric Compound Motorcraft MERCON威 Automatic Transmission Fluid Motorcraft SAE 75W-90 Fuel Efficient High Performance Synthetic Rear Axle Lubricant


Ford part number Motorcraft XL-1


Ford specification


none


XT-2-QDX


MERCON威


XT-2-QDX


MERCON威


XT-5-QM


MERCON威V


XT-6–QSP


MERCON威 SP WSS-M2C919–D


XG-3-A


ESE-M1C171-A


XT-2-QDX


MERCON威


XY-75W90– QFEHP


Meets API GL-5


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Maintenance and Specifications


Ford part name SAE 75W-140
Synthetic Rear Axle Lubricant


Ford part number XY-75W140–QL WSL-M2C192–A


Ford specification


SAE 90 Hypoid Gear Oil


C6AZ-19580–E


ESW-M2C105–E


SAE 80W-90
Premium Rear Axle Lubricant


XY-80W90–QL


WSP-M2C197–A


ZC-32–A


WSB-M8B16–A2


Motorcraft Premium Windshield Washer Concentrate


Item


Dana M70HD (M273HD) E-350 DSO Dana M60
(M248) E-250/350 DSO limited slip3
Dana Limited Slip Axles3
M60 (M248) E-250/350
M70FF (M267FF) E-350
M70HD (M273HD) E-450
Dana conventional axles M60 (M248) E-250/350
M70FF (M267FF) E-350
M70HD (M273HD) E-450
Windshield washer fluid


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2004 Econoline (eco) Owners Guide (post-2002-fmt) USA English (fus)


Maintenance and Specifications


1Ensure the correct automatic transmission fluid is used. Transmission fluid requirements are indicated on the dipstick or on the dipstick handle. Check the container to verify the fluid being added is of the correct type. Refer to your Scheduled Maintenance Guide to determine the correct service interval. Some transmission fluids may be labeled as dual usage, such as MERCON威 and MERCON威 V. These dual usage fluids are not to be used in an automatic transmission that requires use of the MERCON威 type fluid. However, these dual usage fluids may be used in transmissions that require the MERCON威 V type fluid. MERCON威 and MERCON威 V type fluids are not interchangeable. DO NOT mix MERCON威 and MERCON威 V. Use of a transmission fluid that indicates dual usage (MERCON威 and MERCON威 V) in an automatic transmission application requiring MERCON威 may cause transmission damage. Use of any fluid other than the recommended fluid may cause transmission damage. 2Add 118 ml (4 oz.) of Additive Friction Modifier XL-3 or equivalent meeting Ford specification EST-M2C118-A for complete refill of Visteon Traction-Lok rear axles. 3Add 237 ml (8 oz.) of Additive Friction Modifier C8AZ-19B546-A or equivalent meeting Ford specification EST-M2C118-A for complete refill of Dana Limited Slip rear axles.


4.6L V8 engine 5.4L V8 engine 6.8L V10 engine 281


ENGINE DATA Engine* Cubic inches Required fuel 87 octane Firing order Ignition system Compression ratio *Refer to the Power Stroke Direct Injection Turbo Diesel Owner’s Guide Supplement for diesel engine information.


330
87 octane 1-3-7-2-6-5-4-8
Coil on plug


415
87 octane 1-6-5-10-2-7-3-8-4-9
Coil on plug


1-3-7-2-6-5-4-8
Coil on plug


9.0:1


9.0:1


9.4:1


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Maintenance and Specifications


VEHICLE DIMENSIONS


Van/wagon models


E-150 – Inches


E-250 – Inches


(mm)


(mm)


(1) Overall height (2) Track front/rear 69.4 (1763)/


80.7 (2050)


67.2(1707)


(3) Overall width (excluding mirrors) (4) Wheelbase (5) Overall length


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