16700-ZW9-003 PUMP ASSY., FUEL (Honda Code 6639678). Honda
BF15D3 LGA, BF15D3 LHA, BF15D3 LHGA, BF15D3 LHSA, BF15D3 LHTA, BF15D3 LRA, BF15D3 LRTA, BF15D3 SHA, BF15D3 SHGA, BF15D3 SHSA, BF15D3 SHTA, BF15D3 SRTA, BF15D3 XHA, BF15D3 XHGA, BF15D4 LGA, BF15D4 LHA, BF15D4 LHGA, BF15D4 LHSA, BF15D4 LHTA, BF15D4 LRA
PUMP
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Compatible models:
BF15D3 LGA
BF15D3 LHA
BF15D3 LHGA
BF15D3 LHSA
BF15D3 LHTA
BF15D3 LRA
BF15D3 LRTA
BF15D3 SHA
BF15D3 SHGA
BF15D3 SHSA
BF15D3 SHTA
BF15D3 SRTA
BF15D3 XHA
BF15D3 XHGA
BF15D4 LGA
BF15D4 LHA
BF15D4 LHGA
BF15D4 LHSA
BF15D4 LHTA
BF15D4 LRA
BF15D4 LRTA
BF15D4 SHA
BF15D4 SHGA
BF15D4 SHSA
BF15D4 SHTA
BF15D4 SRTA
BF15D4 XHA
BF15D4 XHGA
BF15D5 LGA
BF15D5 LHA
BF15D5 LHGA
BF15D5 LHSA
BF15D5 LHTA
BF15D5 LRA
BF15D5 LRTA
BF15D5 SHA
BF15D5 SHGA
BF15D5 SHSA
BF15D5 SHTA
BF15D5 SRTA
BF15D5 XHA
BF15D5 XHGA
BF15D6 LHA
BF15D6 LHGA
BF15D6 LHSA
BF15D6 LHTA
BF15D6 LRA
BF15D6 LRTA
BF15D6 SHA
BF15D6 SHGA
BF15D6 SHSA
BF15D6 SHTA
BF15D6 SRTA
BF15D6 XHA
BF15D6 XHGA
BF15DK0 LHA
BF15DK0 LHSA
BF15DK0 LHTA
BF15DK0 LRTA
BF15DK0 SHA
BF15DK0 SHSA
BF15DK0 SHTA
BF15DK2 LHA
BF15DK2 LHSA
BF15DK2 LHTA
BF15DK2 LRTA
BF15DK2 SHA
BF15DK2 SHSA
BF15DK2 SHTA
BF15DK3 LHA
BF15DK3 LHSA
BF15DK3 LHTA
BF15DK3 LRTA
BF15DK3 SHA
BF15DK3 SHSA
BF15DK3 SHTA
BF20D3 LGA
BF20D3 LHA
BF20D3 LHGA
BF20D3 LHSA
BF20D3 LHTA
BF20D3 LRA
BF20D3 LRTA
BF20D3 SHA
BF20D3 SHGA
BF20D3 SHSA
BF20D3 SHTA
BF20D3 SRA
BF20D3 SRTA
BF20D3 XHGA
BF20D3 XHSA
BF20D3 XHTA
BF20D4 LGA
BF20D4 LHA
BF20D4 LHGA
BF20D4 LHSA
BF20D4 LHTA
BF20D4 LRA
BF20D4 LRTA
BF20D4 SHA
BF20D4 SHGA
BF20D4 SHSA
BF20D4 SHTA
BF20D4 SRA
BF20D4 SRTA
BF20D4 XHGA
BF20D4 XHSA
BF20D4 XHTA
BF20D5 LGA
BF20D5 LHA
BF20D5 LHGA
BF20D5 LHSA
BF20D5 LHTA
BF20D5 LRA
BF20D5 LRTA
BF20D5 SHA
BF20D5 SHGA
BF20D5 SHSA
BF20D5 SHTA
BF20D5 SRA
BF20D5 SRTA
BF20D5 XHGA
BF20D5 XHSA
BF20D5 XHTA
BF20D6 LHA
BF20D6 LHGA
BF20D6 LHSA
BF20D6 LHTA
BF20D6 LRA
BF20D6 LRTA
BF20D6 SHA
BF20D6 SHGA
BF20D6 SHSA
BF20D6 SHTA
BF20D6 SRA
BF20D6 SRTA
BF20D6 XHGA
BF20D6 XHSA
BF20D6 XHTA
BF20DK0 LHA
BF20DK0 LHTA
BF20DK0 LRTA
BF20DK0 SHA
BF20DK0 SHTA
BF20DK0 SRTA
BF20DK2 LHA
BF20DK2 LHTA
BF20DK2 LRTA
BF20DK2 SHA
BF20DK2 SHTA
BF20DK2 SRTA
BF20DK3 LHA
BF20DK3 LHTA
BF20DK3 LRTA
BF20DK3 SHA
BF20DK3 SHTA
BF20DK3 SRTA
BF8D1 LHA
BF8D1 LHSA
BF8D1 LRA
BF8D1 SA
BF8D1 SHA
BF8D1 SHSA
BF8D1 SRA
BF8D2 LHA
BF8D2 LHSA
BF8D2 LRA
BF8D2 SA
BF8D2 SHA
BF8D2 SHSA
BF8D2 SRA
BF8D3 LHA
BF8D3 LHSA
BF8D3 LRA
BF8D3 SA
BF8D3 SHA
BF8D3 SHSA
BF8D3 SRA
BF8D4 LHA
BF8D4 LHSA
BF8D4 LRA
BF8D4 SHA
BF8D4 SHSA
BF8D5 LHA
BF8D5 LHSA
BF8D5 LRA
BF8D5 SHA
BF8D5 SHSA
BF8D6 LHA
BF8D6 LHSA
BF8D6 LRA
BF8D6 SHA
BF8D6 SHSA
BF8DK0 LHA
BF8DK0 LHSA
BF8DK0 SHA
BF8DK2 LHA
BF8DK2 LHSA
BF8DK2 SHA
BF8DK3 LHA
BF8DK3 LHSA
BF8DK3 SHA
BF9.9D1 LHA
BF9.9D1 LHSA
BF9.9D1 LRA
BF9.9D1 SA
BF9.9D1 SHA
BF9.9D1 SHSA
BF9.9D1 SRA
BF9.9D2 LHA
BF9.9D2 LHSA
BF9.9D2 LRA
BF9.9D2 SA
BF9.9D2 SHA
BF9.9D2 SHSA
BF9.9D2 SRA
BF9.9D3 LHA
BF9.9D3 LHSA
BF9.9D3 LRA
BF9.9D3 SA
BF9.9D3 SHA
BF9.9D3 SHSA
BF9.9D3 SRA
BF9.9D4 LHA
BF9.9D4 LHSA
BF9.9D4 LRA
BF9.9D4 SHA
BF9.9D4 SHSA
BF9.9D4 SRTA
BF9.9D5 LHA
BF9.9D5 LHSA
BF9.9D5 LRA
BF9.9D5 SHA
BF9.9D5 SHSA
BF9.9D5 SRTA
BF9.9D6 LHA
BF9.9D6 LHSA
BF9.9D6 LRA
BF9.9D6 SHA
BF9.9D6 SHSA
BF9.9D6 SRTA
BF9.9DK0 LHA
BF9.9DK0 LHSA
BF9.9DK0 LRA
BF9.9DK0 SHA
BF9.9DK0 SHSA
BF9.9DK2 LHA
BF9.9DK2 LHSA
BF9.9DK2 LRA
BF9.9DK2 SHA
BF9.9DK2 SHSA
BF9.9DK3 LHA
BF9.9DK3 LHSA
BF9.9DK3 LRA
BF9.9DK3 SHA
BF9.9DK3 SHSA
BFP15D3 LRTA
BFP15D3 XHTA
BFP15D3 XRTA
BFP15D4 LRTA
BFP15D4 XHTA
BFP15D4 XRTA
BFP15D5 LRTA
BFP15D5 XHTA
BFP15D5 XRTA
BFP15D6 LRTA
BFP15D6 XHTA
BFP15D6 XRTA
BFP15DK0 LRTA
BFP15DK0 XHTA
BFP15DK0 XRTA
BFP15DK2 XHTA
BFP15DK2 XRTA
BFP15DK3 XHTA
BFP15DK3 XRTA
BFP20D3 LRTA
BFP20D4 LRTA
BFP20D5 LRTA
BFP20D6 LRTA
BFP20DK0 LRTA
BFP8D1 LHA
BFP8D1 LHSA
BFP8D1 LRA
BFP8D1 XHA
BFP8D1 XHSA
BFP8D1 XRA
BFP8D2 LHA
BFP8D2 LHSA
BFP8D2 LRA
BFP8D2 XHA
BFP8D2 XHSA
BFP8D2 XRA
BFP8D3 LHA
BFP8D3 LHSA
BFP8D3 LRA
BFP8D3 XHA
BFP8D3 XHSA
BFP8D3 XRA
BFP8D4 LHA
BFP8D4 LHTA
BFP8D4 LRTA
BFP8D4 XHA
BFP8D4 XHSA
BFP8D5 LHA
BFP8D5 LHTA
BFP8D5 LRTA
BFP8D5 XHA
BFP8D5 XHSA
BFP8D6 LHA
BFP8D6 LHTA
BFP8D6 LRTA
BFP8D6 XHA
BFP8D6 XHSA
BFP8DK0 LHA
BFP8DK0 LHTA
BFP8DK0 LRTA
BFP8DK0 XHSA
BFP8DK2 LHTA
BFP8DK2 LRTA
BFP8DK2 XHSA
BFP8DK3 LHTA
BFP8DK3 LRTA
BFP8DK3 XHSA
BFP9.9D1 LHA
BFP9.9D1 LHSA
BFP9.9D1 LRA
BFP9.9D1 XHA
BFP9.9D1 XHSA
BFP9.9D1 XRA
BFP9.9D2 LHA
BFP9.9D2 LHSA
BFP9.9D2 LRA
BFP9.9D2 XHA
BFP9.9D2 XHSA
BFP9.9D2 XRA
BFP9.9D3 LHA
BFP9.9D3 LHSA
BFP9.9D3 LRA
BFP9.9D3 XHA
BFP9.9D3 XHSA
BFP9.9D3 XRA
BFP9.9D4 LHA
BFP9.9D4 LHTA
BFP9.9D4 LRA
BFP9.9D4 LRTA
BFP9.9D4 XHA
BFP9.9D4 XHSA
BFP9.9D4 XHTA
BFP9.9D4 XRTA
BFP9.9D5 LHA
BFP9.9D5 LHTA
BFP9.9D5 LRA
BFP9.9D5 LRTA
BFP9.9D5 XHA
BFP9.9D5 XHSA
BFP9.9D5 XHTA
BFP9.9D5 XRTA
BFP9.9D6 LHA
BFP9.9D6 LHTA
BFP9.9D6 LRA
BFP9.9D6 LRTA
BFP9.9D6 XHA
BFP9.9D6 XHSA
BFP9.9D6 XHTA
BFP9.9D6 XRTA
BFP9.9DK0 LHA
BFP9.9DK0 LHTA
BFP9.9DK0 LRA
BFP9.9DK0 LRTA
BFP9.9DK0 XHA
BFP9.9DK0 XHSA
BFP9.9DK0 XHTA
BFP9.9DK0 XRTA
BFP9.9DK2 LHTA
BFP9.9DK2 LRTA
BFP9.9DK2 XHA
BFP9.9DK2 XHSA
BFP9.9DK2 XHTA
BFP9.9DK2 XRTA
BFP9.9DK3 LHTA
BFP9.9DK3 LRTA
BFP9.9DK3 XHA
BFP9.9DK3 XHSA
BFP9.9DK3 XHTA
BFP9.9DK3 XRTA
Honda
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Information:
Turbocharger
A turbocharger increases the temperature and the density of the air that is sent to the engine cylinder. This condition causes a lower temperature of ignition to develop earlier in the compression stroke. The compression stroke is also timed in a more accurate way with the fuel injection. Surplus air lowers the temperature of combustion. This surplus air also provides internal cooling.A turbocharger improves the following aspects of engine performance:
Power output is increased.
Engine torque is increased.
Engine efficiency is increased.
Illustration 1 g00302786
Components of a turbocharger (typical example)
(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 port
(11) Exhaust inletA turbocharger is installed between the exhaust and intake manifolds. The turbocharger is driven by exhaust gases which flow through the exhaust inlet (11). The energy of the exhaust gas turns the turbine wheel (8). Then, the exhaust gas flows out of the turbine housing (7) through the exhaust outlet (9).Turbine wheel (8) and compressor wheel (3) are installed on the same shaft. Therefore, turbine wheel (8) and compressor wheel (3) rotate at the same rpm. The compressor wheel is enclosed by compressor housing (2). The compressor wheel compresses the intake air. The intake air flows into the engine cylinders through the inlet valves of the cylinders.The oil from the main gallery of the cylinder block flows through the oil inlet port (5) to lubricate the turbocharger bearings (4) and (6). The pressurized oil passes through the bearing housing of the turbocharger. The oil is returned through the oil outlet port (10) to the oil pan.The turbocharger has a wastegate. The wastegate is controlled by the boost pressure. This allows some of the exhaust gases to bypass the turbine wheel at higher engine speeds. The wastegate is a type of flapper valve that automatically opens at a preset level of boost pressure to allow exhaust gas to flow around the turbine. The wastegate allows the design of the turbocharger to be more effective at lower engine speeds.NOx Reduction System (NRS)
Illustration 2 g03789285
Typical example
The NOx Reduction System (NRS) operates with the transfer of the hot exhaust gas from the exhaust manifold to the exhaust gas cooler (3). The hot exhaust gas is cooled in the exhaust gas cooler. The now cooled exhaust gas passes through to an electronic controlled valve (1). The electronically controlled valve is electronically actuated. The valve is controlled by the Electronic Control Module (ECM).The inlet gas throttle valve (if equipped) (2) is controlled by the Electronic Control Module (ECM).The butterfly valve that is located in the exhaust gas valve (NRS) has one main function. The main function is to prevent the reverse flow of charge air from the inlet side of the engine to the exhaust side of the engine.The electronically controlled valve (1) opens to allow the flow of cooled exhaust gas from the exhaust gas cooler (3) to mix with the air flow from the inlet. The mixing of the cooled exhaust gas and the air flow from the inlet reduces the oxygen content of the gas mixture. This results in a lower combustion temperature, so decreases the production of NOx.In some instances, the engine will need to use the electronically controlled exhaust gas valve (1) and the inlet gas throttle valve (2) for the NOx Reduction System (NRS) to generate the required flow of exhaust gas.Cylinder Head And Valves
Illustration 3 g00905459
Cross section of the inlet and exhaust valves in the cylinder head (typical example)
Illustration 4 g00905464
Cylinder head and valves (typical example)
(1) Collets
(2) Valve spring retainer
(3) Valve spring
(4) Valve seal
(5) Valve guide
(6) Cylinder head
(7) Cylinder head gasket
(8) Pushrod
(9) Lifter
(10) Exhaust valve
(11) Inlet valveThe valves and the rocker shaft assembly control the flow of air into the cylinders and out of the cylinders during engine operation. The cylinder head assembly has two valves for each cylinder. Each valve has one valve spring (3). The ports for inlet valve (11) and exhaust valve (10) are on the left side of the cylinder head.The valve moves along a steel valve guide (5). The valve guides can be replaced.The inlet valve and the exhaust valve are opened and closed by the rotation and movement of the following components:
Crankshaft
Idler gear
Camshaft
Valve lifters
Pushrods
Rocker arms
Valve springsThe camshaft gear is driven by the idler gear. The camshaft gear, the idler gear, and the crankshaft gear are timed together. When the camshaft turns, the valve lifters are moved up and down. The pushrods move the rocker arms. The rocker arms make the inlet valves and the exhaust valves open and close. This is in sequence with the firing order of the engine. The valve springs force the valves back to the closed position.Crankcase Breather
The crankcase breather gases are part of the engines measured emissions output. Any tampering with the breather system could invalidate the engines emissions compliance.
The engine has a low-pressure closed circuit breather system installed.The crankcase gas is routed through an external pipe from the valve mechanism cover to the Oil Mist Separator (OMS). This uses a filter element to separate the oil vapor from the blow-by gases. The gas exits the filter. The gas is then piped into the air inlet hose. The gas then flows into the turbocharger before entering the engine again through the inlet manifold.
A turbocharger increases the temperature and the density of the air that is sent to the engine cylinder. This condition causes a lower temperature of ignition to develop earlier in the compression stroke. The compression stroke is also timed in a more accurate way with the fuel injection. Surplus air lowers the temperature of combustion. This surplus air also provides internal cooling.A turbocharger improves the following aspects of engine performance:
Power output is increased.
Engine torque is increased.
Engine efficiency is increased.
Illustration 1 g00302786
Components of a turbocharger (typical example)
(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 port
(11) Exhaust inletA turbocharger is installed between the exhaust and intake manifolds. The turbocharger is driven by exhaust gases which flow through the exhaust inlet (11). The energy of the exhaust gas turns the turbine wheel (8). Then, the exhaust gas flows out of the turbine housing (7) through the exhaust outlet (9).Turbine wheel (8) and compressor wheel (3) are installed on the same shaft. Therefore, turbine wheel (8) and compressor wheel (3) rotate at the same rpm. The compressor wheel is enclosed by compressor housing (2). The compressor wheel compresses the intake air. The intake air flows into the engine cylinders through the inlet valves of the cylinders.The oil from the main gallery of the cylinder block flows through the oil inlet port (5) to lubricate the turbocharger bearings (4) and (6). The pressurized oil passes through the bearing housing of the turbocharger. The oil is returned through the oil outlet port (10) to the oil pan.The turbocharger has a wastegate. The wastegate is controlled by the boost pressure. This allows some of the exhaust gases to bypass the turbine wheel at higher engine speeds. The wastegate is a type of flapper valve that automatically opens at a preset level of boost pressure to allow exhaust gas to flow around the turbine. The wastegate allows the design of the turbocharger to be more effective at lower engine speeds.NOx Reduction System (NRS)
Illustration 2 g03789285
Typical example
The NOx Reduction System (NRS) operates with the transfer of the hot exhaust gas from the exhaust manifold to the exhaust gas cooler (3). The hot exhaust gas is cooled in the exhaust gas cooler. The now cooled exhaust gas passes through to an electronic controlled valve (1). The electronically controlled valve is electronically actuated. The valve is controlled by the Electronic Control Module (ECM).The inlet gas throttle valve (if equipped) (2) is controlled by the Electronic Control Module (ECM).The butterfly valve that is located in the exhaust gas valve (NRS) has one main function. The main function is to prevent the reverse flow of charge air from the inlet side of the engine to the exhaust side of the engine.The electronically controlled valve (1) opens to allow the flow of cooled exhaust gas from the exhaust gas cooler (3) to mix with the air flow from the inlet. The mixing of the cooled exhaust gas and the air flow from the inlet reduces the oxygen content of the gas mixture. This results in a lower combustion temperature, so decreases the production of NOx.In some instances, the engine will need to use the electronically controlled exhaust gas valve (1) and the inlet gas throttle valve (2) for the NOx Reduction System (NRS) to generate the required flow of exhaust gas.Cylinder Head And Valves
Illustration 3 g00905459
Cross section of the inlet and exhaust valves in the cylinder head (typical example)
Illustration 4 g00905464
Cylinder head and valves (typical example)
(1) Collets
(2) Valve spring retainer
(3) Valve spring
(4) Valve seal
(5) Valve guide
(6) Cylinder head
(7) Cylinder head gasket
(8) Pushrod
(9) Lifter
(10) Exhaust valve
(11) Inlet valveThe valves and the rocker shaft assembly control the flow of air into the cylinders and out of the cylinders during engine operation. The cylinder head assembly has two valves for each cylinder. Each valve has one valve spring (3). The ports for inlet valve (11) and exhaust valve (10) are on the left side of the cylinder head.The valve moves along a steel valve guide (5). The valve guides can be replaced.The inlet valve and the exhaust valve are opened and closed by the rotation and movement of the following components:
Crankshaft
Idler gear
Camshaft
Valve lifters
Pushrods
Rocker arms
Valve springsThe camshaft gear is driven by the idler gear. The camshaft gear, the idler gear, and the crankshaft gear are timed together. When the camshaft turns, the valve lifters are moved up and down. The pushrods move the rocker arms. The rocker arms make the inlet valves and the exhaust valves open and close. This is in sequence with the firing order of the engine. The valve springs force the valves back to the closed position.Crankcase Breather
The crankcase breather gases are part of the engines measured emissions output. Any tampering with the breather system could invalidate the engines emissions compliance.
The engine has a low-pressure closed circuit breather system installed.The crankcase gas is routed through an external pipe from the valve mechanism cover to the Oil Mist Separator (OMS). This uses a filter element to separate the oil vapor from the blow-by gases. The gas exits the filter. The gas is then piped into the air inlet hose. The gas then flows into the turbocharger before entering the engine again through the inlet manifold.
Parts pump Honda:
15100-ZW9-000
15100-ZW9-000 PUMP ASSY., OIL (Honda Code 6639447).
BF15D3 LGA, BF15D3 LHA, BF15D3 LHGA, BF15D3 LHSA, BF15D3 LHTA, BF15D3 LRA, BF15D3 LRTA, BF15D3 SHA, BF15D3 SHGA, BF15D3 SHSA, BF15D3 SHTA, BF15D3 SRTA, BF15D3 XHA, BF15D3 XHGA, BF15D4 LGA, BF15D4 LHA, BF15D4 LHGA, BF15D4 LHSA, BF15D4 LHTA, BF15D4 LRA
06192-ZW9-000
06192-ZW9-000 PUMP KIT, IMPELLER (Honda Code 7452345).
BF8D2 LHA, BF8D2 LHSA, BF8D2 LRA, BF8D2 SA, BF8D2 SHA, BF8D2 SHSA, BF8D2 SRA, BF8D3 LHA, BF8D3 LHSA, BF8D3 LRA, BF8D3 SA, BF8D3 SHA, BF8D3 SHSA, BF8D3 SRA, BF8D4 LHA, BF8D4 LHSA, BF8D4 LRA, BF8D4 SHA, BF8D4 SHSA, BF8D5 LHA, BF8D5 LHSA, BF8D5 LRA, BF8
06192-ZW9-A30
06192-ZW9-A30 PUMP KIT, IMPELLER (Honda Code 7452352).
BF15D3 LGA, BF15D3 LHA, BF15D3 LHGA, BF15D3 LHSA, BF15D3 LHTA, BF15D3 LRA, BF15D3 LRTA, BF15D3 SHA, BF15D3 SHGA, BF15D3 SHSA, BF15D3 SHTA, BF15D3 SRTA, BF15D3 XHA, BF15D3 XHGA, BF15D4 LGA, BF15D4 LHA, BF15D4 LHGA, BF15D4 LHSA, BF15D4 LHTA, BF15D4 LRA
56114-ZY1-871
56114-ZY1-871 PUMP (Honda Code 7334287).
BF15D3 LHTA, BF15D3 LRTA, BF15D3 SHTA, BF15D3 SRTA, BF15D4 LHTA, BF15D4 LRTA, BF15D4 SHTA, BF15D4 SRTA, BF15D5 LHTA, BF15D5 LRTA, BF15D5 SHTA, BF15D5 SRTA, BF15D6 LHTA, BF15D6 LRTA, BF15D6 SHTA, BF15D6 SRTA, BF15DK0 LHTA, BF15DK0 LRTA, BF15DK0 SHTA,