1982 shovelhead motor spec

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1995 Camry WIPER MOTOR CIRCUIT BREAKER INSPECTION PROCEDURE

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Filed Under (Toyota Manuals) by admin on 15-10-2011

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INSPECTION PROCEDURE: Inspect the Wiper Fuse. Verify there is power and ground to the Wiper Motor on all speeds (including “Intermittent” or “Mist” if applicable). After verifying power and ground to the Wiper Motor, follow the procedure below to prevent unnecessary Wiper Motor replacement because of a temporary open in the Wiper Motor Circuit Breaker. 1) Disconnect the Wiper Motor Harness Connector. 2) Wait (10) minutes before checking continuity. 3) Check the continuity of the motor with an ohmmeter. REPRESENTATIVE CHECKING PROCEDURE: NOTE: Continuity check can be performed between either the low speed or high speed terminal and the ground terminal of the wiper motor. The standard resistance of a good wiper motor is approximately 1.5 to 4.5 ohm

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Commonwealth of Massachusetts Registry of Motor Vehicles Motorcycle Manual

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Filed Under (Tips and Review) by admin on 18-11-2010

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DEFINITIONS MOTORCYCLE Any motor vehicle having a seat or saddle for the rider that is designed to travel with no more than three wheels contacting the ground, including any bicycle with a motor or driving wheels attached. MOTORIZED BICYCLE A pedal bicycle which has a helper motor, or a non-pedal bicycle which has a motor, with a cylinder capacity not exceeding fifty (50) cubic centimeters, an automatic transmission, and which is capable of a maximum speed of no more than thirty (30) miles per hour (mph) . OPERATION OF MOTORIZED BICYCLES Under Massachusetts law, mopeds fall into the category of “motorized bicycles”(with or without pedals) and are therefore regulated by the Registrar of Motor Vehicles. Individuals must have a valid learner’s permit or driver’s license to operate a motorized bicycle or moped. Mopeds must have automatic transmissions and cylinder capacities of no more than 50 cubic centimeters. In addition, mopeds must meet all federal motor vehicle safety standards and have maximum speeds of no more than 30 mph. The following limitations apply:  Individuals may not operate at speeds greater than 25 mph;  Individuals may not operate on state highways or limited- access roads with signs prohibiting bicycles;  Individuals may not operate on off-street recreational paths;  Individuals may use bicycle lanes along roadways;  Individuals must use the proper hand signals before stopping or turning;  Individuals and their passengers must wear United States Department of Transportation (US DOT) approved helmets when operating;  Individuals may not carry passengers while operating on a permit.

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TRIUMPH ROCKET III TIP OVER BARS INSTALLATION INSTRUCTIONS

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Filed Under (Triumph) by admin on 29-12-2010

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1. Starting on the right side (towards the front of the motor) locate the three mounting bolts that secure the brake assembly bracket (a chrome tube) to the bottom of the motor. Remove the bottom and front bolts. Repeat for left side. 2. Locate the front motor mount bolt. This is the black bolt located at the very front of the engine about halfway down behind the radiator. Remove the nut from this bolt on the left side. Properly secure the bike and use a jack to lift up on the motor to release the pressure from the motor mount bolt. Remove the bolt. 3. On the right side place the motor mount bolt thru the upper mounting hole of the right tip over bar. Install the tip over bar by feeding the motor mount bolt thru the original hole and inserting the two bolts (supplied) into the bottom mounting holes. (Do not tighten yet.) 4. On the left side install the top of the left tip over bar by inserting it into the right side tip over bar. Align the tip over bar so that the motor mount bolt extends thru the upper mounting hole. Thread the original locking nut onto the motor mount bolt a couple of turns. Now align the bottom of the tip over bar and install the remaining two bolts (supplied). Tighten the motor mount bolt (torque to 28-32 ft/lbs) and the lower four bolts (torque to 14-18 ft/lbs) securely. 5. Re-check all hardware for tightness

1982 Kawasaki KZ550C Electric Motorcycle Conversion Notes

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Filed Under (Kawasaki) by admin on 03-12-2010

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Starting point: • 1982 Kawasaki KZ550C that I found in an alley near my house. Frame rust sanded and repainted. • Rebuilt front suspension ($25 for front fork oil seals, 1 weekend for repair) • Need-to-be-rebuilt front brake caliper • Need-to-be-replaced front master brake cylinder (expected ~$80) • Need-to-be-refurbished electrical wiring system and 12V battery • Working rear brake • Flat rear tire, patched with fix-a-flat (temporary repair), 77″ circumference. • In-tact 530 size 62″ chain with 36 tooth driven sprocket • Miscellaneous spare parts from 1978 Kawasaki KZ450, most of which fit on the 1982 frame, including an ignition switch and key. I started with a chassis I found in an alley near my house. It was in rough shape and needed some refurbishment before I could start the conversion. Most of refurbishment steps are listed above in bullets. In addition to the repainting and repair of important aspects of the bike, I also needed to remove the IC engine components and the grease caked on from years of IC use. The Clymer manual for this bike was helpful in this process, which was about $18 from [13]. Steps for removing the engine were as follows. I removed the seat and the gas tank. I removed the electrical system wiring and 12V battery holder. I then removed the carburetors (which took a lot of pushing and shoving) and air filter box. I then removed the drive socket cover and removed the drive socket from the engine drive shaft. This allowed me to slip the chain off of the drive socket after loosening the rear wheel to put slack into the chain. I slipped the chain off and let it rest on the rear wheel swing arm and drained the old motor oil. I then removed all of the engine mounting bolts and pushed the entire engine out of the right side of the bike. This took a lot of effort but it is possible to remove the engine without removing the piston heads as recommended in the Clymer manual. The engine weights about 60-70 lbs, so it was possible to handle with one person. I suggest using a flat car jack to help with engine removal. I will eventually sell the IC parts through Ebay

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New Automatic Transmission for Motorcycles Human-Friendly Transmission

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Filed Under (Honda) by admin on 18-12-2011

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High-pressure fluid flow The engine rotates the pump swash plate, which has a gear mechanism. The rotating swash plate pushes the pump pistons to increase the pressure on the hydraulic fluid and feed it to the high-pressure annular chamber. The high- pressure fluid is then fed to the oil motor piston chamber where it pushes the pistons forward, which then push the motor swash plate. Power Fluid flow from pump to motor Fluid flow from motor to pump Low-pressure fluid flow The lower-pressure hydraulic fluid returns to the pump through the low-pressure annular chamber. In this way, the fluid circulates between the pump and the motor. Movement of distributor valves and pistons The distributor valves play an important role in fluid circulation. The valves are placed both in the oil pump and motor. When the pump pistons move to the compression side, the valves connect the piston chamber and the high- pressure chamber. When the pump pistons move to the expansion side, the valves allow a connection between the piston chamber and the low-pressure chamber. The valve in the oil motor moves opposite to its counterpart in the pump, ensuring the circulation of fluid within the system

BMW R1100RT, BMW R1150RT Signal Mirror Installation Instructions

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Filed Under (BMW) by admin on 26-10-2010

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1. These instructions start with the right side mirror. Grab the mirror housing as shown and slowly push down to disengage housing from motorcycle. 2. Once you have the mirror housing removed partially, twist and remove the light bulb from mirror housing. Remove mirror housing and set it on a cloth covered surface. 3. Remove the factory mirror by inserting a slotted screwdriver against each mirror mount snaps. Slowly twist and pry each snap until it releases from motor actuator. Repeat process until factory mirror disengages. NOTE: Insert the slotted screwdriver as close to each of the snaps as possible before prying out the OE mirror. Not doing so may cause the crossbar on the motor actuator to break. Connect the two mating connectors from the adapter Signal® mirror wire harness and the new Signal® mirror wire harness. Cut a slot in the foam disc to accommodate the anti-vibration prongs on the motor adapter. Place the foam disc onto the center of the Signal® mirror motor interface. Connect the Signal® mirror mating connector to the Signal® mirror wire harness. 5. Remove Cap Sheet from two-sided adhesive disc on back of Signal ® mirror. Align the anti-rotation prongs found on the top and bottom or left and right with the corresponding slots on the motor mount. Use the palm of your hand, push down on the Signal® mirror and the mirror housing until the Signal® mirror motor mount is fully engaged. Note: Push firmly on all sides of the Signal® mirror to ensure proper engagement and travel. Not doing so could result in mirror falling off. 6. Locate the light bulb and carefully disconnect the original light blue with black stripe wire [hot wire]. Connect the red wire from the Signal® mirror wire harness to the spade terminal on the light bulb. Connect the original light blue with black stripe wire to the other spade terminal located on the red wire of the Signal® mirror wire harness. Repeat the process for the original brown wire and the black wire from the Signal® mirror wire harness [ground wires]. Insert the light bulb back into the mirror housing. 7. Align the 3-pins with their corresponding snap holes and snap the mirror housing into place. 8. Insert key into the ignition and turn to the “ON” position. Activate the right hand turn indicator to verify that the new Signal® mirror is working correctly. Replace any other accessories necess

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YAMAHA MOTOR CORPORATION, U.S.A. STREET & ENDURO MOTORCYCLE LIMITED WARRANTY

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Filed Under (Yamaha) by admin on 27-12-2011

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GENERALEXCLUSIONS from this warranty shall include any failures caused by: a. Competition or racing use. b. Installation of parts or accessories that are not qualitatively equivalent to genuine Yamaha parts. c. Abnormal strain, neglect, or abuse. d. Lack of proper maintenance. e. Accident or collision damage. f. Modification to original parts. g. Damage due to improper transportation. SPECIFIC EXCLUSIONS from this warranty shall include parts replaced due to normal wear or routine maintenance. THE CUSTOMER’S RESPONSIBILITY under this warranty shall be to: 1. Operate and maintain the motorcycle as specified in the appropriate Owner’s Manual. 2. Give notice to an authorized Yamaha motorcycle dealer of any and all apparent defects within ten (10) days after discovery, and make the machine available at that time for inspection and repairs at such dealer’s place of business. You may locate your nearest authorized Yamaha dealer through your local telephone directory. WARRANTY TRANSFER: To transfer any remaining warranty from the original purchaser to any subsequent purchaser, it is imperative that the machine be inspected and registered for warranty by an authorized Yamaha motorcycle dealer. In order for this warranty to remain in effect, this inspection and registration must take place within ten (10) days after transfer. Areasonable dealer imposed fee may be charged for the inspection. In no case will warranty be extended beyond the original period. EMISSIONS CONTROLSYSTEM WARRANTY Yamaha Motor Corporation, U.S.A. also warrants to the ultimate purchaser and each subsequent purchaser of each Yamaha motorcycle covered by this warranty with a displacement of 50cc or greater, that the vehicle is designed, built, and equipped so as to conform at the time of sale with all U.S. emissions standards applicable at the time of manufacture and that it is free from defects in materials and workmanship which would cause it not to meet these standards within the periods listed immediately below. Failures other than those resulting from defects in material or workmanship which arise solely as a result of owner abuse and/or lack of proper maintenance are not covered by this warranty.

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HARLEY DAVIDSON XL STARTER MOTOR COVER INSTALLATION MANUAL

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Filed Under (Harley Davidson) by admin on 13-03-2011

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Installation 1. Remove exhaust system according to Service Manual instructions. 2. See Figure 1. Remove the outer primary screw shown and retain it for reinstallation. 3. See Service Parts Illustration. Insert the thread cleaning screw (9), through the primary cover and the crankcase until the full screw diameter protrudes through the crankcase. Remove any debris from from the tip of the thread cleaning screw. Remove thread forming screw and discard. NOTE If thread cleaning screw binds in crankcase hole, remove thread cleaning screw and chase threads with 1/4 – 20 tap. 4. Install set screw (8) from outer primary side using the wrench provided. Set screw should extend past the crankcase approximately .375″. 5. With wrench in set screw to prevent rotation, install the backplate over the set screw and fasten with the 1/4-20 nylock nut (5). 6. Reinstall the primary cover screw saved in Step 1. Torque to 80-110 in-lbs (9-12 Nm). 7. Remove the the oil hose clamp from the starter stud. Do not remove the clamp from the hoses. 8. Replace the original equipment starter stud with stud (7) provided. Torque to 39-65 in-lbs (4-7 Nm). 9. Install bracket (2) over stud (7) and fasten with #10-24 nylock nut (6). Rotate bracket until the tab on the bracket rests on starter motor. 10. Install oil hose clamp onto bracket (2) using one of the #10-24 screws (4). Tuck the hoses down as far as possible without contacting the drive belt or kinking the hose. Contacting the drive belt or kinking the hose may cause damage to the hoses or powertrain. 11. Install the cover (1) to the backplate (3) and bracket (2) using four of the #10-24 screws (4) with the wrench provided. The cover should fit inboard of the gear cover and partially on top of the sprocket cover. Start the bracket screw first, then follow with the (3) backplate screws. 12. Reinstall exhaust system according to Service Manual Instructions

HARLEY-DAVIDSON 1340cc SHOVELHEAD INSTALLATION INSTRUCTIONS

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Filed Under (Harley Davidson) by admin on 29-02-2012

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Each cylinder should be deburred on top and generously chamfered on bottom for ease of piston and ring installation. Finish hone with a 280-400 grit hone. A good cross hatch finishing pattern is important for best results. CAUTION: Wash cylinder assembly with soap and water, then swab with new # 10 oil on a clean rag until all tendency of rag discolor is gone. Washing in solvent will not remove the abrasive from finished cylinder walls

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Harley-Davidson Camshaft TC, EVO, Shovelhead, XL EVO, Iron Head, XR Specifications

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Filed Under (Harley Davidson) by admin on 02-11-2010

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EVO Black Widow PP8833-2 – 29 55 62 25 264 267 54 103 109 105.8 0.600 0.602 EVO Black Widow PP8826-2 – 27 61 63 29 268 272 56 107 107 107.0 0.602 0.602 EVO Black Widow PP8817-2 – 254 254 0.590 0.590 EVO Carl’s Speed Shop CM4 – 28 44 52 20 252 252 48 98 106 102.0 0.495 0.495 EVO Carl’s Speed Shop CM495F Y 19 47 50 16 246 246 35 104 107 105.5 0.495 0.495 0.179 0.168 EVO Carl’s Speed Shop CM580 – 19 47 50 16 246 246 35 104 107 105.5 0.580 0.580 0.194 0.163 EVO Carl’s Speed Shop CM612 – 36 60 68 28 276 276 64 102 110 106.0 0.612 0.612 0.277 0.235 88 EVO Carl’s Speed Shop CM660 – 38 62 68 28 280 276 66 102 110 106.0 0.660 0.660 0.314 0.277 90 EVO Carl’s Speed Shop CM774 – 284 284 0.784 0.784 0.277 0.236 EVO Carl’s Speed Shop CM780F – 34 70 74 30 284 284 64 108 112 110.0 0.774 0.774 103 EVO Crane EVR0020 – 31 64.5 77 23 275 280 54 107 117 112.0 0.608 0.589 88 EVO Crane Fireball 2000 Y -12 22 20 -10 190 190 -22 107 105 106.0 0.490 0.490 0.026 0.032 EVO Crane Fireball 300 Y 12 34 41 15 226 236 27 101 103 102.0 0.490 0.490 4000 EVO Crane Fireball 310 Y 16 40 43 19 236 242 35 102 102 102.0 0.490 0.490 1500 4500 75 EVO Crane Fireball 316 Y 19 43 48 24 242 252 43 102 102 102.0 0.490 0.490 2000 5000 80 EVO Crane Fireball 326 – 24 48 57 25 252 262 49 102 106 104.0 0.490 0.500 2500 5500 EVO Crane H286 Y 19 43 48 24 242 252 43 102 102 102.0 0.490 0.490 2000 5000 80 EVO Crane H290 – 17 43 45 23 240 248 40 103 101 102.0 0.581 0.581 1800 5200 EVO Crane H296 – 24 48 57 25 252 262 49 102 106 104.0 0.490 0.500 2500 5500 EVO Crane H304 – 24 50 55 25 254 260 49 103 105 104.0 0.600 0.600 2500 5800 EVO Crane H306 – 28 54 69 23 262 272 51 103 113 108.0 0.500 0.510 0.224 0.195 3000 6000 EVO Crane H310 – 23 63 68 28 266 276 51 110 110 110.0 0.550 0.550 0.229 0.229 3000 6500 88 EVO Crane H314 – 26 54 65 21 260 266 47 104 112 108.0 0.600 0.600 2800 6000 EVO Crane HEV0042 – 27 59 71 23 266 274 50 106 114 110.0 0.600 0.576 0.226 0.194 3000 6000 100 116 EVO Crane HEV0067 – 24 50 56 24 254 260 48 103 106 104.5 0.600 0.530 0.128 0.113 EVO Crane HEV0098 – 36 62 72 34 278 286 70 103 109 106.0 0.650 0.650 0.171 0.156 96 EVO CycleRama CR-E550 – 24 52 53 23 256 256 47 104 105 104.5 0.550 0.530 EVO CycleRama CR-E581 – 22 46 53 23 248 256 45 102 105 103.5 0.581 0.550 EVO CycleRama CR-E600A – 24 50 56 24 254 260 48 103 106 104.5 0.600 0.530 EVO CycleRama CR-E600B – 23 51 54 22 254 256 45 104 106 105.0 0.600 0.550 EVO CycleRama CR-E617 – 22 50 50 22 252 252 44 104 104 104.0 0.617 0.617 EVO CycleRama CR-E630 – 18 60 63 13 258 256 31 111 115 113.0 0.630 0.630 EVO CycleRama CR-E660 – 27 59 71 23 266 274 50 106 114 110.0 0.660 0.660 3500 6500 140 EVO Dave Mackie DM500 Y 22 38 52 12 240 244 34 98 110 104.0 0.500 0.500 0.189 0.138 EVO Dave Mackie DM500X Y 25 40 55 20 245 255 45 98 108 102.5 0.500 0.500 0.208 0.178 EVO Dave Mackie DM530 – 28 42 55 15 250 250 43 97 110 103.5 0.530 0.530 0.221 0.141 EVO Dave Mackie DM580 – 26 42 56 12 248 248 38 98 112 105.0 0.580 0.580 0.227 0.144 113 EVO Dave Mackie DM581 – 26 42 56 12 248 248 38 98 112 105.0 0.580 0.580 0.227 0.144 EVO Dave Mackie DM595 – 21 49 57 14 250 251 35 104 112 107.8 0.595 0.595 0.192 0.150 EVO Dave Mackie DM635 – 20 56 59 18 256 257 38 108 111 109.3 0.635 0.635 0.194 0.176 EVO Edlebrock 1740 Y 19 43 48 24 242 252 43 102 102 102.0 0.490 0.490 0.176 0.203 EVO Edlebrock 1741 – 20 46 52 22 246 254 42 103 105 104.0 0.600 0.600 0.183 0.187 EVO Head Quarters HQ-23 – 19 47 52 24 246 256 43 104 104 104.0 0.600 0.530 EVO Head Quarters HQ-24 Y 20 36 52 19 236 251 39 98 107 102.3 0.500 0.500 EVO Head Quarters HQ-25 – 18 38 42 14 236 236 32 100 104 102.0 0.550 0.550 EVO Head Quarters HQ-26 – 20 54 53 22 254 255 42 107 106 106.3 0.600 0.530 89 EVO Head Quarters HQ-27 – 26 60 70 24 266 274 50 107 113 110.0 0.650 0.575

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