15150-P8A-A00 Honda JOINT ASSY., OIL PIPE (Honda Code 5232368).


15150-P8A-A00 JOINT ASSY., OIL PIPE (Honda Code 5232368). Honda BF175AK1 LA, BF175AK1 XA, BF175AK1 XCA, BF175AK2 LA, BF175AK2 XA, BF175AK2 XCA, BF200A2 LA, BF200A2 XA, BF200A2 XCA, BF200A2 XXA, BF200A2 XXCA, BF200A3 LA, BF200A3 XA, BF200A3 XCA, BF200A3 XXA, BF200A3 XXCA, BF200A4 LA, BF200A4 XA, BF200A4 XCA, BF200 JOINT
15150-P8A-A00 JOINT ASSY., OIL PIPE (Honda Code 5232368). Honda
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$39.00
 

14-07-2024
0.75[0.34] Pounds
US: HONDA-KTMSOUTHGA
Genuine Honda 15150-P8A-A00 Oil Pipe Joint Assembly
Honda Product Type :Auto Part || Package Dimensions :1.0" L X1.73" W X0.87" H || Package Quantity :1 || Package Weight :0.87Lbs
Number on catalog scheme: 12
 

Honda entire parts catalog list:

BF175AK1 LA 2007
BF175AK1 XA 2007
BF175AK1 XCA 2007
BF175AK2 LA 2007
BF175AK2 XA 2007
BF175AK2 XCA 2007
BF200A2 LA 2002
BF200A2 XA 2002
BF200A2 XCA 2002
BF200A2 XXA 2002
BF200A2 XXCA 2002
BF200A3 LA 2003
BF200A3 XA 2003
BF200A3 XCA 2003
BF200A3 XXA 2003
BF200A3 XXCA 2003
BF200A4 LA 2004
BF200A4 XA 2004
BF200A4 XCA 2004
BF200A4 XXA 2004
BF200A4 XXCA 2004
BF200A5 LA 2005
BF200A5 XA 2005
BF200A5 XCA 2005
BF200A5 XXA 2005
BF200A5 XXCA 2005
BF200A6 LA 2006
BF200A6 XA 2006
BF200A6 XCA 2006
BF200A6 XXA 2006
BF200A6 XXCA 2006
BF200AK0 LA 2007
BF200AK0 XA 2007
BF200AK0 XCA 2007
BF200AK1 LA 2007
BF200AK1 XA 2007
BF200AK1 XCA 2007
BF200AK2 LA 2007
BF200AK2 XA 2007
BF200AK2 XCA 2007
BF225A2 LA 2002
BF225A2 XA 2002
BF225A2 XCA 2002
BF225A2 XXA 2002
BF225A2 XXCA 2002
BF225A3 LA 2003
BF225A3 XA 2003
BF225A3 XCA 2003
BF225A3 XXA 2003
BF225A3 XXCA 2003
BF225A4 LA 2004
BF225A4 XA 2004
BF225A4 XCA 2004
BF225A4 XXA 2004
BF225A4 XXCA 2004
BF225A5 LA 2005
BF225A5 XA 2005
BF225A5 XCA 2005
BF225A5 XXA 2005
BF225A5 XXCA 2005
BF225A6 LA 2006
BF225A6 XA 2006
BF225A6 XCA 2006
BF225A6 XXA 2006
BF225A6 XXCA 2006
BF225AK0 LA 2007
BF225AK0 XA 2007
BF225AK0 XCA 2007
BF225AK0 XXA 2007
BF225AK0 XXCA 2007
BF225AK1 LA 2007
BF225AK1 XA 2007
BF225AK1 XCA 2007
BF225AK1 XXA 2007
BF225AK1 XXCA 2007
BF225AK2 LA 2007
BF225AK2 XA 2007
BF225AK2 XCA 2007
BF225AK2 XXA 2007
BF225AK2 XXCA 2007
BF250A LA 2007
BF250A XA 2007
BF250A XCA 2007
BF250A XXA 2007
BF250A XXCA 2007

Information:


Illustration 1 g06471531Reference: For more information, refer to supplemental video "C9.3B Engine Air Inlet and Exhaust System" on Caterpillar Channel1.Note: Click or copy the following link into a web browser (a CWS login is required to access Caterpillar Channel1), or scan the following QR code using a QR enabled device.https://channel1.mediaspace.kaltura.com/media/1_qmhzbg63
Illustration 2 g06527995System Overview
Illustration 3 g06237563
Air inlet and exhaust system
(1) Air-to-air aftercooler (ATAAC)
(2) Exhaust manifold
(3) Turbocharger
(4) Clean Emissions Module (CEM)
(5) Intake manifold
(6) Cylinder headThe engine has an electronic control system. The system controls the operation of the engine and Clean Emissions Module (CEM). The CEM consists of the following components: Diesel Oxidation Catalyst (DOC), Diesel Particulate Filter (DPF), Selective Catalytic Reduction (SCR), and electrical system components.Inlet air is pulled through the air cleaner . The inlet air is then compressed and heated by the compressor wheel of turbocharger to about 150 °C (300 °F). The inlet air is then pushed through air-to-air aftercooler core. As the air flows through the aftercooler, the temperature of the compressed air lowers to about 50° C (122° F). Cooling of the inlet air assists the combustion efficiency of the engine. Increased combustion efficiency helps to lower fuel consumption and increase power output.Aftercooler core is a separate cooler core. The aftercooler core is installed in front of the core of the engine radiator. Air that is ambient temperature is moved across the aftercooler core by the engine fan. The aftercooler core cools the turbocharged inlet air.From aftercooler core, the air is forced into the intake manifold. Air flow from the inlet manifold into the cylinders is controlled by the inlet valves.
Illustration 4 g06237576
(7) Exhaust manifold
(8) Air inlet heater
(9) Aftercooler core
(10) Exhaust valve
(11) Inlet valve
(12) Air inlet
(13) Exhaust outlet
(14) Compressor side of turbocharger
(15) Turbine side of turbochargerThere are two inlet valves and two exhaust valves 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 will 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 valves open, and the exhaust gases are pushed through the exhaust port into the exhaust manifold. After the piston completes the exhaust stroke, the exhaust valves close and the cycle will start again. The complete cycle consists of four stages:
Inlet stroke
Compression stroke
Power stroke
Exhaust strokeExhaust gases from the exhaust manifold enter the turbine side of turbocharger 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 5 g06237584
(1) Air intake
(2) Compressor housing
(3) Compressor wheel
(4) Bearing
(5) Oil inlet port
(6) Bearing
(7) Turbine housing
(8) Turbine wheel
(9) Exhaust outlet
(10) Oil outlet
(11) Exhaust inletThe 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 enter turbine housing through the exhaust inlet (11). The exhaust gases then push the blades of turbine wheel (8). The turbine wheel is connected by a shaft to the compressor wheel (3). Clean air is pulled through the compressor housing air inlet (2) by rotation of the compressor wheel . The action of the compressor wheel blades causes a compression of the inlet air. This compressor allows the engine to burn more fuel. When the engine burns more fuel, the engine produces more power.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.The operation of the wastegate is controlled by the boost pressure. At high boost pressures, the wastegate opens to decrease boost pressure. At low boost pressure, the wastegate closes to increase boost pressure. Closing the valve of the wastegate allows the turbocharger to operate at maximum performance. 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 gases are routed through the wastegate which bypasses the turbine wheel of the turbocharger. Certain applications have turbochargers that are equipped with a smart wastegate. The smart wastegate performs the same function as a regular wastegate, but is also activated by a software-controlled electronic valve in addition to boost pressure. The smart wastegate keeps the wastegate closed during certain operating conditions to prevent wasting exhaust, regardless of boost pressure. The regular wastegate will activate whenever it senses a certain amount of boost pressure, regardless of engine operating conditions.Note: The turbocharger with a wastegate is preset at the factory and no adjustment can be made.Bearings (4) and (6) for the turbocharger use engine oil under pressure for lubrication and cooling. The oil comes in through oil inlet port (5). The oil then goes through passages in the center section to lubricate the bearings. This oil also cools the bearings. Oil from the turbocharger goes out through oil outlet port (10) in the bottom of the center section. The oil then goes back to the engine oil pan.Valve System Components
Illustration 6 g02396141
Valve system components
(40) Rocker arms
(41) Bridge
(42) Spring
(43) Pushrods
(44) Valves
(45) Lifter


Parts joint Honda:

56113-ZW1-701
JOINT, DRIVE (Honda Code 5300546).
56113-ZW1-701 JOINT, DRIVE (Honda Code 5300546).
BF115A1 LA, BF115A1 LCA, BF115A1 XA, BF115A1 XCA, BF115A2 LA, BF115A2 LCA, BF115A2 XA, BF115A2 XCA, BF115A3 LA, BF115A3 LCA, BF115A3 XA, BF115A3 XCA, BF115A4 LA, BF115A4 LCA, BF115A4 XA, BF115A4 XCA, BF115A5 LA, BF115A5 LCA, BF115A5 XA, BF115A5 XCA,
17201-MG9-000
JOINT, VACUUM TUBE (A) (Honda Code 1523992).
17201-MG9-000 JOINT, VACUUM TUBE (A) (Honda Code 1523992).
BF115A1 LA, BF115A1 LCA, BF115A1 XA, BF115A1 XCA, BF115A2 LA, BF115A2 LCA, BF115A2 XA, BF115A2 XCA, BF115A3 LA, BF115A3 LCA, BF115A3 XA, BF115A3 XCA, BF115A4 LA, BF115A4 LCA, BF115A4 XA, BF115A4 XCA, BF115A5 LA, BF115A5 LCA, BF115A5 XA, BF115A5 XCA,
16752-ZY3-000
JOINT, FUEL PIPE (Honda Code 6990212).
16752-ZY3-000 JOINT, FUEL PIPE (Honda Code 6990212).
BF115A2 LA, BF115A2 LCA, BF115A2 XA, BF115A2 XCA, BF115A3 LA, BF115A3 LCA, BF115A3 XA, BF115A3 XCA, BF115A4 LA, BF115A4 LCA, BF115A4 XA, BF115A4 XCA, BF115A5 LA, BF115A5 LCA, BF115A5 XA, BF115A5 XCA, BF115A6 LA, BF115A6 LCA, BF115A6 XA, BF115A6 XCA,
16026-ZY3-000
JOINT SET (Honda Code 6989800).
16026-ZY3-000 JOINT SET (Honda Code 6989800).
BF115A2 LA, BF115A2 LCA, BF115A2 XA, BF115A2 XCA, BF115A3 LA, BF115A3 LCA, BF115A3 XA, BF115A3 XCA, BF115A4 LA, BF115A4 LCA, BF115A4 XA, BF115A4 XCA, BF115A5 LA, BF115A5 LCA, BF115A5 XA, BF115A5 XCA, BF115A6 LA, BF115A6 LCA, BF115A6 XA, BF115A6 XCA,
19271-ZY3-000
 
19271-ZY3-000 JOINT, WATER HOSE (Honda Code 6990972).
BF115DK1 LA, BF115DK1 XA, BF115DK1 XCA, BF135A4 LA, BF135A4 XA, BF135A4 XCA, BF135A5 LA, BF135A5 XA, BF135A5 XCA, BF135A6 LA, BF135A6 XA, BF135A6 XCA, BF135AK0 LA, BF135AK0 XA, BF135AK0 XCA, BF135AK2 LA, BF135AK2 XA, BF135AK2 XCA, BF150A4 LA, BF150A4
16966-MR5-000
 
16966-MR5-000 JOINT, FUEL TUBE (Honda Code 3136686).
BF115DK1 LA, BF115DK1 XA, BF115DK1 XCA, BF135A4 LA, BF135A4 XA, BF135A4 XCA, BF135A5 LA, BF135A5 XA, BF135A5 XCA, BF135A6 LA, BF135A6 XA, BF135A6 XCA, BF135AK0 LA, BF135AK0 XA, BF135AK0 XCA, BF135AK2 LA, BF135AK2 XA, BF135AK2 XCA, BF150A4 LA, BF150A4
16966-MR1-000
 
16966-MR1-000 JOINT, FUEL TUBE (Honda Code 2852549).
BF115DK1 LA, BF115DK1 XA, BF115DK1 XCA, BF135A4 LA, BF135A4 XA, BF135A4 XCA, BF135A5 LA, BF135A5 XA, BF135A5 XCA, BF135A6 LA, BF135A6 XA, BF135A6 XCA, BF135AK0 LA, BF135AK0 XA, BF135AK0 XCA, BF135AK2 LA, BF135AK2 XA, BF135AK2 XCA, BF150A4 LA, BF150A4
38562-663-920
JOINT B, WASHER TUBE (MITSUBA)
38562-663-920 JOINT B, WASHER TUBE (MITSUBA)
BF135A4 LA, BF135A4 XA, BF135A4 XCA, BF135A5 LA, BF135A5 XA, BF135A5 XCA, BF135A6 LA, BF135A6 XA, BF135A6 XCA, BF135AK0 LA, BF135AK0 XA, BF135AK0 XCA, BF150A4 LA, BF150A4 XA, BF150A4 XCA, BF150A5 LA, BF150A5 XA, BF150A5 XCA, BF150A6 LA, BF150A6 XA, B
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