F1822 HEX BOLT 5/16 - 18 X 7/8 Force
H040312RD, H040312SD, H0407E92C, H0507A90A, H0507A90B, H0507A90C, H0507A90D, H0507A91A, H0507A91C, H0507A92A, H0507C87C, H0507E91B, H0507F87B, H0558H79L, H0559B80M, H0559H77H, H0559H77J, H0559H78K, H0559H80N, H0559H83R, H0606H84A, H0659B78B, H0700H79
HEX
Price: query
Rating:
Compatible models:
H040312RD
H040312SD
H0407E92C
H0507A90A
H0507A90B
H0507A90C
H0507A90D
H0507A91A
H0507A91C
H0507A92A
H0507C87C
H0507E91B
H0507F87B
H0558H79L
H0559B80M
H0559H77H
H0559H77J
H0559H78K
H0559H80N
H0559H83R
H0606H84A
H0659B78B
H0700H79A
H0709B79A
H0750H79A
H0756H80F
H0756H81G
H0756H82H
H0757B79E
H0757H75A
H0757H76C
H0757H78D
H0758H80B
H0758H82E
H0759H79A
H0850H79A
H0850H80A
H0850H81C
H0851H79A
H0851X88A
H0853F88B
H0853F89C
H0853F89E
H0853F89F
H0853F89G
H0855H79A
H0856A89A
H0856A89H
H0856B80H
H0856C87A
H0856C87B
H0856F84A
H0856F85A
H0856F86A
H0856H82K
H0856L89D
H0856Y89B
H0857B78F
H0857H79G
H0858B80C
H0858B82E
H0858C84H
H0859B79B
H0859H77A
H0859H78A
H0903E91D
H0903E91H
H0903F90B
H0903F90C
H0903F91A
H0903F91C
H0906A90A
H0906R83D
H1000H79A
H1004H79A
H1006B80B
H1006B81C
H1007H79A
H1008H80A
H1008H83C
H1057B78H
H1058H82G
H1058V83H
H1059H76D
H1059H77G
H1150H79A
H1151H79A
H1154B79A
H1155H79A
H1156H80C
H1156H81D
H1157B79B
H1157H78A
H1158B82E
H1158H80D
H1158H84G
H1159H77A
H1159H78B
H1159H79C
H1201A90A
H1209H76F
H1251A88A
H1251A88B
H1251A88C
H1251A89A
H1251A89B
H1251A89C
H1251A89D
H1251A89E
H1251F84A
H1251F86A
H1251F87A
H1251F87B
H1251X85A
H1258H81A
H1400H79A
H1401H79A
H1405H79A
H1406H80C
H1406H81D
H1407B79B
H1407H78A
H1408B80C
H1408H82D
H1408H83E
H1409H78A
H1409H79B
H1501E89A
Force
Force entire parts catalog list:
- STARTER ASSEMBLY » F1822
- STARTER ASSEMBLY » F1822
- STARTER » F1822
- ELECTRICAL COMPONENTS » F1822
- ELECTRICAL COMPONENTS » F1822
- ELECTRICAL COMPONENTS » F1822
- ELECTRICAL COMPONENTS » F1822
- ELECTRICAL COMPONENTS » F1822
- ELECTRICAL COMPONENTS » F1822
- ELECTRICAL COMPONENTS » F1822
H0507E91B 1991
- ELECTRICAL COMPONENTS » F1822
H0558H79L 1979
- STARTER » F1822
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- STARTER » F1822
- STARTER » F1822
- STARTER » F1822
- POWER TRIM » F1822
- STARTER » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT 758H1C, 758B1C MODELS » F1822
- MOTOR LEG 758H1C, 758B1C MODELS » F1822
- MOTOR LEG 756H1G, 756B1G MODELS » F1822
- POWER TRIM UNIT 758H2D, 758B2D MODELS » F1822
- MOTOR LEG 758H2D, 758B2D MODELS » F1822
- MOTOR LEG 756H2H, 756B2H MODELS » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT 758H2E, 758B2E, 758H3F, 758B3F MODELS » F1822
- MOTOR LEG 758H2E, 758B2E, 758H3F, 758B3F MODELS » F1822
- MOTOR LEG 756H2J, 756B2J, 756H3K, 756B3K MODELS » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT 858H2F 858B2F 858H3G » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT 858H2F 858B2F 858H3G » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- DRIVESHAFT HOUSING » F1822
- DESIGN I - POWER TRIM UNIT WITH BAYONET CONNECTORS » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
- MOTOR LEG » F1822
- MOTOR LEG » F1822
- POWER TRIM UNIT » F1822
Information:
Illustration 1 g01448580
Air flow schematic
(1) Air line
(2) Aftercooler core
(3) Air inlet elbow
(4) Exhaust outlet from turbocharger
(5) Turbine side of turbocharger
(6) Compressor side of turbocharger
(7) Air cleaner The components of the air inlet and exhaust system control the quality of the air that is available for combustion. These components also control the amount of the air that is available for combustion. The components of the air inlet and exhaust system are listed below:
Air cleaner
Turbocharger
Aftercooler
Cylinder head
Valves and valve system components
Piston and cylinder
Exhaust manifoldInlet air is pulled through the air cleaner. The inlet air is then compressed and heated by the compressor wheel of turbocharger (6) to about 150°C (300°F). The inlet air is then pushed through air-to-air aftercooler core (2) and the inlet air is moved to air inlet elbow (3). The temperature of the inlet air at air inlet elbow (3) is about 43°C (110°F). Cooling of the inlet air increases the combustion efficiency. Increased combustion efficiency helps to lower fuel consumption. Also, increased combustion efficiency helps to increase horsepower output.Aftercooler core (2) is a separate cooler core. Aftercooler core (2) is installed in front of the core (standard) of the engine radiator on the machine. Air that is ambient temperature is moved across the aftercooler core by the engine fan. This cools the turbocharged inlet air.From aftercooler core (2), the air is forced into the cylinder head in order to fill the inlet ports. Air flow from the inlet port into the cylinder is controlled by the inlet valves.
Illustration 2 g01448586
Air inlet and exhaust system
(2) Aftercooler core
(4) Exhaust outlet from turbocharger
(5) Turbine side of turbocharger
(6) Compressor side of turbocharger
(8) Exhaust manifold
(9) Exhaust valve
(10) Inlet valve
(11) Air inlet There are two inlet valves and one exhaust valve for each cylinder. Inlet valves open when the piston moves down on the inlet stroke. When the inlet valves open, cooled compressed air from the inlet port is pulled into the cylinder. The inlet valves close and the piston begins to move up on the compression stroke. The air in the cylinder is compressed. When the piston is near the top of the compression stroke, fuel is injected into the cylinder. The fuel mixes with the air and combustion starts. During the power stroke, the combustion force pushes the piston downward. After the power stroke is complete, the piston moves upward. This upward movement is the exhaust stroke. During the exhaust stroke, the exhaust valve opens, and the exhaust gases are pushed through the exhaust port into the exhaust manifold. After the piston completes the exhaust stroke, the exhaust valve closes and the cycle starts again. The complete cycle consists of four stages:
Inlet stroke
Compression stroke
Power stroke
Exhaust strokeExhaust gases from exhaust manifold (8) enter the turbine side of turbocharger (5) in order to turn the turbine wheel. The turbine wheel is connected to a shaft which drives the compressor wheel. Exhaust gases from the turbocharger pass through the exhaust outlet pipe, the muffler and the exhaust stack.Turbocharger
Illustration 3 g01448601
Turbocharger
(12) Air inlet
(13) Compressor housing
(14) Compressor wheel
(15) Bearing
(16) Oil inlet port
(17) Bearing
(18) Turbine housing
(19) Turbine wheel
(20) Exhaust outlet
(21) Oil outlet port
(22) Exhaust inlet The turbocharger is installed on the center section of the exhaust manifold. All the exhaust gases from the engine go through the turbocharger. The compressor side of the turbocharger is connected to the aftercooler by a pipe.The exhaust gases go into turbine housing (18) through exhaust inlet (22). The exhaust gases then push the blades of turbine wheel (19). The turbine wheel is connected by a shaft to compressor wheel (14).Clean air from the air cleaners is pulled through compressor housing air inlet (12) by the rotation of compressor wheel (14). The action of the compressor wheel blades causes a compression of the inlet air. This compression gives the engine more power by allowing the engine to burn more air and more fuel during combustion.When the load on the engine increases, more fuel is injected into the cylinders. The combustion of this additional fuel produces more exhaust gases. The additional exhaust gases cause the turbine and the compressor wheels of the turbocharger to turn faster. As the compressor wheel turns faster, more air is forced into the cylinders. The increased flow of air gives the engine more power by allowing the engine to burn the additional fuel with greater efficiency.Bearings (15) and (17) for the turbocharger use engine oil under pressure for lubrication. The oil comes in through oil inlet port (16). The oil then goes through passages in the center section in order to lubricate the bearings. Oil from the turbocharger goes out through oil outlet port (21) in the bottom of the center section. The oil then goes back to the engine lubrication system.
Illustration 4 g01448617
Turbocharger with wastegate
(23) Actuating lever
(24) Canister
(25) Line (boost pressure)
(26) Pressure relief orifice When the engine is operating under conditions of low boost, a spring pushes on a diaphragm in canister (24). This action moves actuating lever (23) in order to close the valve of the wastegate. Closing the valve of the wastegate allows the turbocharger to operate at maximum performance.
Illustration 5 g01448618
(27) Inlet manifold
(28) Wastegate solenoid Wastegate solenoid (28) allows the engine ECM to more precisely regulate the boost pressure to the engine. By closing or partially closing the wastegate solenoid, the ECM can increase the boost pressure. Typical wastegates will limit boost pressure to a preset limit. Wastegate solenoid (28) blocks air from reaching the wastegate and this allows boost pressure to increase. Air is routed from inlet manifold (27) to wastegate solenoid (28). The wastegate solenoid (28) senses the air pressure of the inlet air and the wastegate solenoid adjusts the wastegate accordingly. The pressure relief orifice (26) allows air to escape from the line (boost pressure) when the pressure is too high.As the boost pressure through line (25) increases against the diaphragm in canister (24), the valve of the wastegate is opened. When the valve of the wastegate is opened, the rpm of the turbocharger is limited by bypassing a portion of the exhaust gases. The exhaust
Parts hex Force:
F1920
F1920 HEX NUT, 5/8 - 18
H0352H77H, H0352H79L, H0353H78K, H0353H80M, H0353H81N, H0353H82P, H0356H75F, H0456B78J, H0456B79K, H0456B80L, H0457H82N, H0457H83P, H0503B83A, H0503H84B, H0507B85A, H0507C86A, H0507C87A, H0507F87B, H0507H81A, H0507H82B, H0555H74G
F1636
F1636 HEX SOCKET HD CAP SCREW, S.S., 3/8 - 16 X 1 1/4
H0257F88A, H0257F88B, H0352F90B, H0352F90C, H0352H77H, H0352H79L, H0353E91A, H0353E91B, H0353H78K, H0353H80M, H0353H81N, H0353H82P, H0355D89A, H0356F89B, H0356H75F, H0357C88B, H0357F89C, H0357G90A, H0456B78J, H0456B79K, H0456B80L, H0457H82N, H0457H83
F1699
F1699 HEX HD SCREW, S.S., 1/4 - 20 X 1 1/8
H0032H84G, H0033H75C, H0054H76D, H0060B78B, H0060H79C, H0060H80D, H0062B78J, H0062H79K, H0064H80F, H0064H82H, H0067H79C, H0070B79A, H0071H81B, H0071H82C, H0071H83D, H0071H84E, H0072B81D, H0072H79B, H0072H80C, H0072H82E, H0075H79A, H0082H78J, H0252B83
F1252
F1252 HEX SOCKET HD CAP SCREW, S.S., 3/8 - 16 X 1
H0700H79A, H0709B79A, H0750H79A, H0757B79E, H0757H75A, H0757H76C, H0757H78D, H0759H79A, H1059H76D, H1209H76F
F1873
F1873 HEX BOLT, 3/8 - 16 X 3
H0558H79L, H0559B80M, H0559H77H, H0559H77J, H0559H78K, H0559H80N, H0559H83R, H0606H84A, H0659B78B, H0700H79A, H0709B79A, H0750H79A, H0756H80F, H0756H81G, H0756H82H, H0757B79E, H0757H75A, H0757H76C, H0757H78D, H0758H80B, H0758H82E, H0759H79A, H0850H79
F1891
F1891 HEX HD M. SCREW, 1/4 - 20 X 1 1/2
H0032H84G, H0062B78J, H0062H79K, H0064H82H, H0067H79C, H0071H84E, H0072B81D, H0072H79B, H0072H80C, H0072H82E, H0082H78J, H0558H79L, H0559B80M, H0559H77H, H0559H77J, H0559H78K, H0659B78B
F1417
F1707