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1996 Ford Bronco/F-Series Clutch Hydraulic Line REMOVAL AND INSTALLATION MANUAL

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Filed Under (Ford Manuals) by admin on 30-04-2012

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Clutch Hydraulic Line Removal 1. Note the routing of the clutch slave cylinder to clutch master cylinder tube (7A512) line from clutch master cylinder (7A543) to the clutch slave cylinder. 2. Remove retainer pin from clutch master cylinder holding clutch slave cylinder to clutch master cylinder tube in place. 3. Raise the vehicle and install suitable safety stands. 4. Disconnect clutch slave cylinder to clutch master cylinder tube from external clutch slave cylinder. On vehicles equipped with concentric clutch slave cylinders, remove tube using Clutch Coupling Tool T88T-70522-A. Installation 1. Follow the removal procedures in reverse order. 2. Bleed system. Refer to appropriate clutch hydraulic system bleeding procedure in the Adjustments portion of this section.

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1996 Ford Bronco/ F-Series Clutch Hydraulic Line REMOVAL AND INSTALLATION MANUAL

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Filed Under (Ford Manuals) by admin on 08-02-2012

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Clutch Hydraulic Line Removal 1. Note the routing of the clutch slave cylinder to clutch master cylinder tube (7A512) line from clutch master cylinder (7A543) to the clutch slave cylinder. 2. Remove retainer pin from clutch master cylinder holding clutch slave cylinder to clutch master cylinder tube in place. 3. Raise the vehicle and install suitable safety stands. 4. Disconnect clutch slave cylinder to clutch master cylinder tube from external clutch slave cylinder. On vehicles equipped with concentric clutch slave cylinders, remove tube using Clutch Coupling Tool T88T-70522-A. Installation 1. Follow the removal procedures in reverse order. 2. Bleed system. Refer to appropriate clutch hydraulic system bleeding procedure in the Adjustments portion of this section. Hydraulic Clutch Control System, 4.9L, 5.0L and 5.8L Gasoline Engines with Mazda R2 and S5-47 ZF Light-Duty and 7.3L and 7.5L S5-47 ZF Heavy-Duty Transmissions

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2006 Dodge Truck RAM 2500 DENSO A/C COMPRESSOR Service and Repair Manual

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Filed Under (Dodge Manuals) by admin on 23-01-2012

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DENSO A/C COMPRESSOR REMOVAL NOTE: * The compressor clutch assembly can be serviced with the refrigerant system fully-charged. * Typical A/C compressor shown in illustrations. 1. Disconnect and isolate the negative battery cable. 2. Remove the accessory drive belt. 3. Disconnect the engine wire harness from the compressor clutch field coil connector (1) located on the top of the A/C compressor (5) . Remove the bolts that secure the A/C compressor to the engine and support the A/C compressor. 5. Carefully remove the compressor clutch field coil connector and wire lead from the connector bracket (2). 6. Remove the compressor shaft bolt (3). A band-type oil filter wrench or a strap wrench may be used to hold the clutch plate (4) from rotating during bolt removal. CAUTION: Do not pry between the clutch plate and the pulley and bearing assembly to remove the clutch plate from the compressor shaft as this may damage the clutch plate. NOTE: Use care not to lose any clutch shim(s) during removal of the clutch plate, as they may be reused during the clutch plate installation process. 7. Tap the clutch plate (2) lightly with a plastic mallet to release it from the splines on the compressor shaft (1) and remove the clutch plate and shim(s) (3). 8. Using snap ring pliers (2), remove the snap ring (1) that secures the pulley and bearing assembly (3) to the front of the A/C compressor and remove the pulley and bearing assembly. 9. Using snap ring pliers (Special Tool C-4574 or equivalent) (1), remove the snap ring (4) that secures the compressor clutch field coil (2) to the front of the A/C compressor (3) and remove the field coil. INSTALLATION NOTE: Typical A/C compressor shown in illustrations. 1. Align the dowel pin on the back of the compressor clutch field coil (2) with the hole in the front of the A/C compressor (3) and position the field coil onto the compressor. Be certain that the compressor clutch field coil wire lead is properly routed so that it is not pinched between the A/C compressor and the field coil. CAUTION: The snap ring must be fully and properly seated in the groove or it will vibrate out, resulting in a clutch failure and severe damage to the A/C compressor. NOTE: A new snap ring must be used to secure the compressor clutch field coil to the A/C compressor. The bevel side of the snap ring must face outward and both snap ring eyelets must be oriented to the right or to the left of the field coil dowel pin location on the A/C compressor. 2. Using snap ring pliers (Special Tool C-4574 or equivalent) (1), install the snap ring (4) that secures the compressor clutch field coil to the front of the A/C compressor. Be certain that the snap ring is fully and properly seated in the groove and oriented correctly. CAUTION: * Be certain to position the compressor clutch field coil wire lead so that

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2002 Dodge Truck RAM 2500 Symptom Related Diagnostic Procedures/ Installation Manual

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Filed Under (Dodge Manuals) by admin on 16-02-2012

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46RE AUTOMATIC TRANSMISSION DIAGNOSIS AND TESTING – ROAD TESTING Before road testing, be sure the fluid level and control cable adjustments have been checked and adjusted if necessary. Verify that diagnostic trouble codes have been resolved.Observe engine performance during the road test. A poorly tuned engine will not allow accurate analysis of transmission operation. Operate the transmission in all gear ranges. Check for shift variations and engine flare, which indicates slippage. Note if shifts are harsh, spongy, delayed, early, or if part throttle downshifts are sensitive. Slippage indicated by engine flare, usually means clutch , band or overrunning clutch problems. If the condition is advanced, an overhaul will be necessary to restore normal operation. A slipping clutch or band can often be determined by comparing which internal units are applied in the various gear ranges. The Clutch and Band Application chart provides a basis for analyzing road test results. Note that the rear clutch is applied in all forward ranges (D, 2, 1). The transmission overrunning clutch is applied in first gear (D, 2 and 1 ranges) only. The rear band is applied in 1 and R range only. Note that the overdrive clutch is applied only in fourth gear and the overdrive direct clutch and overrunning clutch are applied in all ranges except fourth gear. For example: If slippage occurs in first gear in D and 2 range but not in 1 range, the transmission overrunning clutch is faulty. Similarly, if slippage occurs in any two forward gears, the rear clutch is slipping. Applying the same method of analysis, note that the front and rear clutches are applied simultaneously only in D range third and fourth gear . If the transmission slips in third gear, either the front clutch or the rear clutch is slipping. If the transmission slips in fourth gear but not in third gear, the overdrive clutch is slipping. By selecting another gear, which does not use these clutches, the slipping unit can be determined. For example, if the transmission also slips in Reverse, the front clutch is slipping. If the transmission does not slip in Reverse, the rear clutch is slipping. If slippage occurs during the 3-4 shift or only in fourth gear , the overdrive clutch is slipping. Similarly, if the direct clutch were to fail, the transmission would lose both reverse gear and overrun braking in 2 position (manual second gear). If the transmission will not shift to fourth gear , the control switch, overdrive solenoid or related wiring may also be the problem cause.

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2002 Dodge Truck RAM 2500 46RE AUTOMATIC TRANSMISSION DIAGNOSIS AND TESTING – ROAD TESTING

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Filed Under (Dodge Manuals) by admin on 20-02-2011

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The Clutch and Band Application chart provides a basis for analyzing road test results. Note that the rear clutch is applied in all forward ranges (D, 2, 1). The transmission overrunning clutch is applied in first gear (D, 2 and 1 ranges) only. The rear band is applied in 1 and R range only. Note that the overdrive clutch is applied only in fourth gear and the overdrive direct clutch and overrunning clutch are applied in all ranges except fourth gear. For example: If slippage occurs in first gear in D and 2 range but not in 1 range, the transmission overrunning clutch is faulty. Similarly, if slippage occurs in any two forward gears, the rear clutch is slipping. Applying the same method of analysis, note that the front and rear clutches are applied simultaneously only in D range third and fourth gear . If the transmission slips in third gear, either the front clutch or the rear clutch is slipping. If the transmission slips in fourth gear but not in third gear, the overdrive clutch is slipping. By selecting another gear, which does not use these clutches, the slipping unit can be determined. For example, if the transmission also slips in Reverse, the front clutch is slipping. If the transmission does not slip in Reverse, the rear clutch is slipping. If slippage occurs during the 3-4 shift or only in fourth gear , the overdrive clutch is slipping. Similarly, if the direct clutch were to fail, the transmission would lose both reverse gear and overrun braking in 2 position (manual second gear). If the transmission will not shift to fourth gear , the control switch, overdrive solenoid or related wiring may also be the problem cause. This process of elimination can be used to identify a slipping unit and check operation. Proper use of the Clutch and Band Application Chart is the key. Although road test analysis will help determine the slipping unit, the actual cause of a malfunction usually cannot be determined until hydraulic and air pressure tests are performed. Practically any condition can be caused by leaking hydraulic circuits or sticking valves.Unless a malfunction is obvious, such as no drive in D range first gear , do not disassemble the transmission. Perform the hydraulic and air pressure tests to help determine the probable cause.

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TOYOTA TO CHEVY AND BUICK ENGINE – TURBO CHARGED INSTALLATION INSTRUCTIONS

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Filed Under (Toyota Manuals) by admin on 20-09-2011

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INSTALLATION INSTRUCTIONS: 1. Install the pilot bushing into the engine crank. 2. Bolt the flywheel to the engine crank using special flywheel bolts. 3. Assemble the clutch assembly and special disc to the flywheel using special clutch bolts. 4. Assemble the clutch release arm to the inside ball pivot of the bellhousing. 5. Bolt the slave cylinder to the outside of the bellhousing. 6. Test fit the bellhousing assembly over the clutch assembly and onto the engine block. 7. Place the N1430 release bearing onto the clutch arm fork. 8. Adjust the length of the slave cylinder push rod to a length that provides a minimum of 1/8″ clearance between the release bearing face and clutch fingers. 9. This test fit over the clutch assembly is primarily done for establishing the push rod length. If this procedure is eliminated, you will not have any visual inspection for verifying the push rod adjustment. 10. Remove the bellhousing assembly from the engine. 11. Bolt the bellhousing to the front of your Toyota 5 speed transmission using the original bolts. Make sure that the two dowel pins installed in the face of the 5 speed transmission are properly fitted to the Advance Adapter bellhousing. 12. Slide the new release bearing onto the Toyota bearing retainer. Make sure that there is grease in the internal cavity of the release bearing. Most new bearings are pre-lubricated. 13. With all the components in position, you can now bolt the new bellhousing assembly onto the engine block. We have provided six (6) new socket head bolts, 3/8″-16 x 1-1/2″ long for this purpose. Make sure the engine dowel pins are properly aligned with the new bellhousing dowel pin holes. DO NOT FORCE THE BELLHOUSING ONTO THE ENGINE BLOCK. Some applications may require the tip of the input shaft to be modified slightly. The bellhousing must fit evenly to the engine block. 14. With the bellhousing now in position and the slave cylinder push rod installed, you should be able to verify the clearance between the release bearing & clutch fingers. The lever should have movement of approximately 1/8″ to 1/4″. CAUTION : If you have too much clearance, you will be utilizing too much of the slave cylinder stroke and could possibly prevent you from obtaining a full clutch release. A light duty return spring attached to the clutch release arm will prevent any premature contact of the release bearing with the clutch fingers. 15. The Toyota Land Cruiser slave cylinder will replace the original Toyota slave cylinder. The Toyota truck hydraulic slave cylinder line will have exactly the same fitting size as used on the Land Cruiser slave cylinder. 16. With the new slave cylinder installed, you can now bleed the slave cylinder installation by pumping up the slave cylinder pedal. Most installations are compatible with the original Toyota master cylinder. We have encountered a few installations that require changing of the Toyota master cylinder to a smaller 3/4″ piston. If you have any type of clutch difficulty related to full disengagement of the clutch assembly, contact Advance Adapters for any updated information.

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2000 Ford Ranger Cooling System Draining Filling and Bleeding Repair Manual

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Filed Under (Ford Manuals) by admin on 10-07-2012

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NOTE: Less than 80% of the coolant capacity can be recovered with the engine in the vehicle. Dirty, rusty or contaminated coolant requires replacement. 1. Release the pressure in the cooling system by slowly turning the pressure relief cap one half to one turn counterclockwise to the first stop on the filler neck. When the pressure has been released, remove the pressure relief cap. 2. Raise and support the vehicle, For additional information, refer to Section 100-02 . 3. Remove the lower radiator cover. 4. Place a suitable container below the radiator draincock. Drain the coolant. 5. Close the radiator draincock when finished. Filling and Bleeding with RADKITPLUS 1. Using the special tool, install the RADKITPLUS and follow the RADKITPLUS manufacturer’s instructions to fill and bleed the cooling system. Filling without RADKITPLUS CAUTION: Engine coolant provides freeze protection, boil protection, cooling efficiency and corrosion protection to the engine and cooling components. In order to obtain these protections, the engine coolant must be maintained at the correct concentration and fluid level. When adding engine coolant, use a 50/50 mixture of engine coolant and clean, drinkable water. To maintain the integrity of the coolant and the cooling system: * Add Motorcraft Premium Engine Coolant VC-4-A (in Oregon VC-5, in Canada CXC-10) or equivalent meeting Ford specification ESE-M97B44-A. * Do not add Motorcraft Specialty Engine Coolant such as VC-2 or an equivalent meeting Ford specification WSS-M97B44-D. Mixing coolants can degrade the coolant’s corrosion protection. * Do not add alcohol, methanol, or brine, or any engine coolants mixed with alcohol or methanol antifreeze. These can cause engine damage from overheating or freezing. * Do not mix with recycled coolants unless they meet the requirements of Ford specification ESE-M97B44-A or WSS-M97B51-A1. Not all coolant recycling processes meet these Ford specifications. Use of such coolants can harm the engine and cooling system components. All engines 1. Install the lower radiator cover.

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2001 Ford F-150 Draining-Coalescer/ Pressure Relief-Natural Gas Bi-Fuel System Repair Manual

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Filed Under (Ford Manuals) by admin on 28-05-2012

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1. Relieve the Bi-fuel system fuel pressure. For additional information, refer to Pressure Relief—Natural Gas Bi-Fuel System. 2. Raise the vehicle on the hoist. For additional information, refer to Section 100-02. 3. NOTE: There is an O-ring attached to the drain plug. The O-ring must be replaced each time the drain plug is removed. Remove the drain plug. 4. Install the drain plug. 5. Lower the vehicle. 6. Pressurize the fuel system. WARNING: It is important that your bi-fuel vehicle be correctly maintained by Ford bi-fuel trained personnel. If a concern occurs, it is important that correctly trained personnel diagnose the cause. If a concern relates to the fuel system, correct part replacement is imperative to keep your vehicle operating at normal performance. Bi-fuel components and gasoline specific components are not interchangeable. If your vehicle is not serviced in accordance with bi-fuel service procedures, damage can occur and your warranty may be invalidated. WARNING: Fuel supply lines are always pressurized. When servicing fuel related components, do not smoke or carry lighted tobacco or an open flame of any type. Flammable mixtures may be present and can ignite, resulting in personal injury. WARNING: The natural gas fuel system is always pressurized to 655 kPa (95 psi) downstream of the fuel pressure regulator and up to 24821 kPa (3,600 psi) upstream of the fuel pressure regulator. Use care when servicing the fuel system or personal injury can occur. WARNING: The natural gas fuel supply manifold is pressurized to 655 kPa (95 psi). Fuel pressure must be relieved prior to any fuel system service. WARNING: The fuel system pressure must be relieved before any component can be removed. The fuel tanks must be evacuated prior to tank removal. Removal of components without pressure relief or tank evacuation can cause natural gas to escape into the air and cause injury or death.

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2001 Toyota Echo L4-1.5L Transmission and Drivetrain Clutch Service and Repair Manual

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Filed Under (Toyota Manuals) by admin on 04-06-2011

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REMOVAL 1. REMOVE TRANSAXLE FROM ENGINE 2. REMOVE CLUTCH COVER AND DISC a. Align the matchmark on the clutch cover with the one on the flywheel . b. Loosen each set bolt one turn at a time until spring tension is released. c. Remove the set bolts, and pull off the clutch cover with the clutch disc . NOTICE: Do not drop the clutch disc . 3. REMOVE RELEASE BEARING AND FORK FROM TRANSAXLE Remove the release bearing with the fork together and then separate them. 4. REMOVE RELEASE FORK SUPPORT AND BOOT INSPECTION 1. INSPECT CLUTCH DISC FOR WEAR OR DAMAGE Using vernier calipers, measure the rivet head depth. Minimum rivet depth: 0.3 mm (0.012 inch) If necessary, replace the clutch disc . Zoom Sized for Print Zoom Sized for Print Inspect Clutch Disc Runout 2. INSPECT CLUTCH DISC RUNOUT Using a dial indicator, check the disc runout. Maximum runout: 0.8 mm (0.031 inch) If necessary, replace the clutch disc runout. 3. INSPECT FLYWHEEL RUNOUT Using a dial indicator, check the flywheel runout. Maximum runout: 0.1 mm (0.004 inch) If necessary, replace the flywheel . Torque: 1st: 49 Nm ( 00 kgf-cm, 36 ft. lbs.) 2nd: Turn 90° 4. INSPECT DIAPHRAGM SPRING FOR WEAR Using vernier calipers, measure the diaphragm spring for depth and width of wear. Maximum: A (Depth): 0.5 mm (0.020 inch) B (Width): 6.0 mm (0.236 inch) If necessary, replace the clutch cover.

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TOYOTA G52, G54, W56 & G58 (AX5) 5 SPEED TRANS. TO CHEVY AND BUICK ENGINES INSTALLATION INSTRUCTIONS:

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Filed Under (Toyota Manuals) by admin on 10-11-2011

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This bellhousing is not compatible with transmissions that were previously equipped with diesel engines. The bellhousing design incorporates a special modified clutch release lever and a Toyota Land Cruiser slave cylinder. We have provided slave cylinder mounting on the passenger side of the bellhousing and have incorporated a new push rod location that will provide a quick short travel of the clutch release mechanism. The kit does not include the Toyota Land Cruiser slave cylinder, Part No. 31470-60022. The bellhousing is designed for the 153 tooth flywheel application. If your block is equipped with a 168 tooth flywheel, you will be required to use a high torque starter without a nose cone to fit the bellhousing (P/N 22-0001). The bellhousing is compatible with the Buick flywheel that has 160 teeth. A slight modification may be required in the starter pocket area when using the Buick installation. The inside of the bellhousing uses a high profile Centerforce diaphragm clutch assembly. By using this pressure plate, you can be sure that the slave cylinder travel will be appropriate for obtaining a maximum clutch release. The release bearing, Part No. N1430, is a standard flat faced Chevy release bearing. The bearing must not have continual contact with the fingers of the clutch. Adjust the length of your push rod for clearance between the fingers and the face of bearing. In order to adjust the height of the release bearing, we recommend that you install the new bellhousing over the clutch assembly and onto the engine prior to assembling the transmission to the bellhousing. By doing this procedure, you will be able to install the clutch release lever, slave cylinder, slave cylinder push rod, and release bearing directly to the clutch assembly. The reason this is necessary is that there are variations as to the thickness of the flywheel which either raise or lower the fingers of the clutch as related to the release bearing. The push rod of the slave cylinder can be adjusted, to obtain the necessary clearance between the release bearing and clutch fingers. If the bearing is permitted continual contact on the fingers, then you will have premature release bearing failure. We do not furnish a rubber boot for the area between the bellhousing and clutch arm since it is too restrictive for the clutch arm movement. We believe that the location of the opening is such that any dust or other debris will have a hard time accessing the opening. If you anticipate water hazards, we would recommend a small rubber flapper that could be screwed to the outside of the bellhousing.

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