58130-ZY3-V00ZA PROPELLER, THREE-BLADE (Honda Code 8838161). (15-1/2X13) *NH283* (AL) (STIN GRAY) Honda
BF135AK0 LA, BF135AK0 XA, BF150AK0 LA, BF150AK0 XA, BF200AK0 LA, BF200AK0 XA, BF225AK0 LA, BF225AK0 XA, BF225AK0 XXA
PROPELLER
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Honda entire parts catalog list:
- PROPELLER SHAFT PROPELLER (1) » 58130-ZY3-V00ZA
- PROPELLER SHAFT PROPELLER (LA-LC-XA-XC) » 58130-ZY3-V00ZA
- PROPELLER SHAFT PROPELLER (LA-LC-XA-XC) » 58130-ZY3-V00ZA
- PROPELLER SHAFT PROPELLER (1) » 58130-ZY3-V00ZA
- PROPELLER SHAFT PROPELLER (1) » 58130-ZY3-V00ZA
- PROPELLER SHAFT PROPELLER (LA-LC-XA-XC) » 58130-ZY3-V00ZA
- PROPELLER SHAFT PROPELLER (LA-LC-XA-XC) » 58130-ZY3-V00ZA
- PROPELLER SHAFT PROPELLER (1) » 58130-ZY3-V00ZA
- PROPELLER » 58130-ZY3-V00ZA
- PROPELLER » 58130-ZY3-V00ZA
- PROPELLER » 58130-ZY3-V00ZA
- PROPELLER » 58130-ZY3-V00ZA
- PROPELLER » 58130-ZY3-V00ZA
Information:
Engine Design
Type ... Four Cylinder, Four StrokeCombustion System ... Direct InjectionBore ... 98.43 mm (3.875 in)Stroke ... 127 mm (5 in)Cubic Capacity ... 3.86 liters (236 cu in)Compression Ratio: 4.236 ... 16 to 1T4.236 ... 15.5 to 1Number and Arrangement of Cylinders (as seen from front of engine) ... 1-2-3-4Firing Order ... 1-3-4-2Rotation of crankshaft (as seen from front of engine) ... ClockwiseRotation of camshaft (as seen from front of engine) ... ClockwiseThe left side and right side of engine are as seen from flywheel end. No. 1 cylinder is the front cylinder of the engine.Engine Serial Numbers
Engine Serial Number LocationThe engine serial number is located on the left hand side of the block above the fuel injection pump.For current engines, the first two characters of the serial number stand for the engine family and type. LD stands for a naturally aspirated 4.236 engine. LJ stands for a turbocharged 4.236 engine. The next five characters are the parts list number. These five characters are represented by dashes "-" in this module. The next single letter is the country of origin. The next set of numbers is the production serial number, and the last letter is the year of manufacture. Some new components and improvements have been introduced on the 4.236 and T4.236 engines. If there is a difference in service or specifications, it is noted in this module. The engine cut-in numbers are given for the changes if available.Fuel System
Basic Fuel System Diagram
(1) Fuel injectors (T4.236 injectors shown). (2) Fuel return line from injectors. (3) Cold start heater (thermostart). (4) Fuel return line from fuel filter. (5) Fuel return line from injection pump. (6) Fuel supply line to injection pump. (7) Fuel filter. (8) Fuel lift pump. (9) Water separator. (10) Fuel injection pump. (11) High pressure fuel lines. (12) Fuel tank.When the engine is turning, fuel is pulled from fuel tank (12) through water separator (9) by fuel lift pump (8). When the fuel goes through the water separator, any water in the fuel will go to bottom of the bowl. The fuel lift pump sends the fuel at a low pressure to fuel filter (7). From the fuel filter, the fuel goes through line (6) to fuel injection pump (10). The fuel injection pump sends high pressure fuel through lines (11) to each fuel injector (1), and the fuel injector sprays fuel into the cylinder. Fuel not used by the injection pump goes through line (5) to the inlet side of fuel filter (7).Leakage from the fuel injectors flows through line (2) to the top of fuel filter (7) and back to fuel tank (12).The system must be primed any time any part of the system is drained of fuel. For example, when the fuel filter is changed or a fuel line is removed, the inspection cover on the fuel injection pump is removed to check timing, or the injection pump is removed for service or repair, the fuel system must be primed (air removed).
4.236 Fuel System Components (Left Side)
(1) Fuel injector. (2) Fuel return line from injectors. (5) Fuel return line from fuel injection pump. (7) Fuel filter. (10) Fuel injection pump. (11) High pressure fuel lines.
T4.236 Fuel System Components (Left Side)
(1) Fuel injector. (2) Fuel return line from injectors. (5) Fuel return line from fuel injection pump. (7) Fuel filter. (10) Fuel injection pump. (11) High pressure fuel lines.
4.236 Fuel System Components (Right Side)
(3) Cold start heater. (8) Fuel lift pump.
T4.236 Fuel System Components (Right Side)
(3) Cold start heater. (8) Fuel lift pump.There is a small screen in fuel lift pump (8). The pump also has a lever to prime the fuel system (remove the air). The orifice in the cover of fuel filter (7), to release air in the system, is in the inlet side of the filter. The orifice is connected to the fuel tank by return line (4).Cold start heater (3) is installed in the inlet manifold. It is controlled by the ignition switch.
Unless there is fuel flow through the valve body of the cold start heater, the unit could be destroyed. The fuel supply line to it must also be free of air or damage will result. A cold start heater that is damaged will let fuel drain into the inlet manifold when the engine is running. This could cause exhaust smoke.
Fuel Injectors
4.236 Engine Fuel Injector
(1) Outlet for return fuel (leakage). (2) Cap nut. (3) Fuel inlet (high pressure) line from fuel injection pump. (4) Lift adjusting screw. (5) Compression spring. (6) Body. (7) Valve spindle. (8) Nozzle cap nut. (9) Needle valve. (10) Nozzle. (11) Orifices (four).
T4.236 Engine Fuel Injector
(1) Outlet for return fuel (leakage). (3) Fuel inlet (from fuel injection pump). (5) Compression spring. (6) Body. (8) Nozzle cap nut. (9) Needle valve. (10) Nozzle. (11) Orifices (four).Fuel, under high pressure from the fuel injection pump, goes through the hole in fuel inlet (3). The fuel then goes around needle valve (9), fills the inside of nozzle (10) with fuel and pushes against needle valve (9) and compression spring (5). When the force made by the pressure of the fuel is more than the force of spring (5), valve (9) will lift. When needle valve (9) lifts, fuel under high pressure will go through four orifices (11) into the cylinder. When the fuel is sent to the cylinder, the force made by the pressure of the fuel in the nozzle body will become less. The force of spring (5) will then be more than the force of the pressure of the fuel in the nozzle body. Valve (9) will move quickly to the closed position.Needle valve (9) has a close fit with the inside of the nozzle. This makes a positive seal for the valve.When the fuel is sent to the cylinder, a small quantity of fuel will leak by the valve guide. This fuel gives lubrication to the moving parts of the fuel injection nozzle. This fuel then goes through a leak off passage
Type ... Four Cylinder, Four StrokeCombustion System ... Direct InjectionBore ... 98.43 mm (3.875 in)Stroke ... 127 mm (5 in)Cubic Capacity ... 3.86 liters (236 cu in)Compression Ratio: 4.236 ... 16 to 1T4.236 ... 15.5 to 1Number and Arrangement of Cylinders (as seen from front of engine) ... 1-2-3-4Firing Order ... 1-3-4-2Rotation of crankshaft (as seen from front of engine) ... ClockwiseRotation of camshaft (as seen from front of engine) ... ClockwiseThe left side and right side of engine are as seen from flywheel end. No. 1 cylinder is the front cylinder of the engine.Engine Serial Numbers
Engine Serial Number LocationThe engine serial number is located on the left hand side of the block above the fuel injection pump.For current engines, the first two characters of the serial number stand for the engine family and type. LD stands for a naturally aspirated 4.236 engine. LJ stands for a turbocharged 4.236 engine. The next five characters are the parts list number. These five characters are represented by dashes "-" in this module. The next single letter is the country of origin. The next set of numbers is the production serial number, and the last letter is the year of manufacture. Some new components and improvements have been introduced on the 4.236 and T4.236 engines. If there is a difference in service or specifications, it is noted in this module. The engine cut-in numbers are given for the changes if available.Fuel System
Basic Fuel System Diagram
(1) Fuel injectors (T4.236 injectors shown). (2) Fuel return line from injectors. (3) Cold start heater (thermostart). (4) Fuel return line from fuel filter. (5) Fuel return line from injection pump. (6) Fuel supply line to injection pump. (7) Fuel filter. (8) Fuel lift pump. (9) Water separator. (10) Fuel injection pump. (11) High pressure fuel lines. (12) Fuel tank.When the engine is turning, fuel is pulled from fuel tank (12) through water separator (9) by fuel lift pump (8). When the fuel goes through the water separator, any water in the fuel will go to bottom of the bowl. The fuel lift pump sends the fuel at a low pressure to fuel filter (7). From the fuel filter, the fuel goes through line (6) to fuel injection pump (10). The fuel injection pump sends high pressure fuel through lines (11) to each fuel injector (1), and the fuel injector sprays fuel into the cylinder. Fuel not used by the injection pump goes through line (5) to the inlet side of fuel filter (7).Leakage from the fuel injectors flows through line (2) to the top of fuel filter (7) and back to fuel tank (12).The system must be primed any time any part of the system is drained of fuel. For example, when the fuel filter is changed or a fuel line is removed, the inspection cover on the fuel injection pump is removed to check timing, or the injection pump is removed for service or repair, the fuel system must be primed (air removed).
4.236 Fuel System Components (Left Side)
(1) Fuel injector. (2) Fuel return line from injectors. (5) Fuel return line from fuel injection pump. (7) Fuel filter. (10) Fuel injection pump. (11) High pressure fuel lines.
T4.236 Fuel System Components (Left Side)
(1) Fuel injector. (2) Fuel return line from injectors. (5) Fuel return line from fuel injection pump. (7) Fuel filter. (10) Fuel injection pump. (11) High pressure fuel lines.
4.236 Fuel System Components (Right Side)
(3) Cold start heater. (8) Fuel lift pump.
T4.236 Fuel System Components (Right Side)
(3) Cold start heater. (8) Fuel lift pump.There is a small screen in fuel lift pump (8). The pump also has a lever to prime the fuel system (remove the air). The orifice in the cover of fuel filter (7), to release air in the system, is in the inlet side of the filter. The orifice is connected to the fuel tank by return line (4).Cold start heater (3) is installed in the inlet manifold. It is controlled by the ignition switch.
Unless there is fuel flow through the valve body of the cold start heater, the unit could be destroyed. The fuel supply line to it must also be free of air or damage will result. A cold start heater that is damaged will let fuel drain into the inlet manifold when the engine is running. This could cause exhaust smoke.
Fuel Injectors
4.236 Engine Fuel Injector
(1) Outlet for return fuel (leakage). (2) Cap nut. (3) Fuel inlet (high pressure) line from fuel injection pump. (4) Lift adjusting screw. (5) Compression spring. (6) Body. (7) Valve spindle. (8) Nozzle cap nut. (9) Needle valve. (10) Nozzle. (11) Orifices (four).
T4.236 Engine Fuel Injector
(1) Outlet for return fuel (leakage). (3) Fuel inlet (from fuel injection pump). (5) Compression spring. (6) Body. (8) Nozzle cap nut. (9) Needle valve. (10) Nozzle. (11) Orifices (four).Fuel, under high pressure from the fuel injection pump, goes through the hole in fuel inlet (3). The fuel then goes around needle valve (9), fills the inside of nozzle (10) with fuel and pushes against needle valve (9) and compression spring (5). When the force made by the pressure of the fuel is more than the force of spring (5), valve (9) will lift. When needle valve (9) lifts, fuel under high pressure will go through four orifices (11) into the cylinder. When the fuel is sent to the cylinder, the force made by the pressure of the fuel in the nozzle body will become less. The force of spring (5) will then be more than the force of the pressure of the fuel in the nozzle body. Valve (9) will move quickly to the closed position.Needle valve (9) has a close fit with the inside of the nozzle. This makes a positive seal for the valve.When the fuel is sent to the cylinder, a small quantity of fuel will leak by the valve guide. This fuel gives lubrication to the moving parts of the fuel injection nozzle. This fuel then goes through a leak off passage
Parts propeller Honda:
58130-ZY3-019A
58130-ZY3-019A PROPELLER, THREE-BLADE (Honda Code 6628077). (14-3/4X19) (AL)
BF135A4 LA, BF135A4 XA, BF135A5 LA, BF135A5 XA, BF135A6 LA, BF135A6 XA, BF135AK0 LA, BF135AK0 XA, BF150A4 LA, BF150A4 XA, BF150A5 LA, BF150A5 XA, BF150A6 LA, BF150A6 XA, BF150AK0 LA, BF150AK0 XA, BF200A2 LA, BF200A2 XA, BF200A2 XXA, BF200A3 LA, BF200
58130-ZY3-015A
58130-ZY3-015A PROPELLER, THREE-BLADE (Honda Code 6628119). (15-1/4X15) (AL)
BF135A4 LA, BF135A4 XA, BF135A5 LA, BF135A5 XA, BF135A6 LA, BF135A6 XA, BF135AK0 LA, BF135AK0 XA, BF150A4 LA, BF150A4 XA, BF150A5 LA, BF150A5 XA, BF150A6 LA, BF150A6 XA, BF150AK0 LA, BF150AK0 XA, BF200A2 LA, BF200A2 XA, BF200A2 XXA, BF200A3 LA, BF200
58133-ZY3-A25AH
58133-ZY3-A25AH PROPELLER, THREE-BLADE (14X25) (Honda Code 7050743). (SUS)
BF115DK1 LA, BF115DK1 XA, BF135A4 LA, BF135A4 XA, BF135A5 LA, BF135A5 XA, BF135A6 LA, BF135A6 XA, BF135AK0 LA, BF135AK0 XA, BF135AK2 LA, BF135AK2 XA, BF150A4 LA, BF150A4 XA, BF150A5 LA, BF150A5 XA, BF150A6 LA, BF150A6 XA, BF150AK0 LA, BF150AK0 XA, BF
58130-ZY3-013A
58130-ZY3-013A PROPELLER, THREE-BLADE (Honda Code 6628127). (15-1/2X13) (AL)
BF135A4 LA, BF135A4 XA, BF135A5 LA, BF135A5 XA, BF135A6 LA, BF135A6 XA, BF135AK0 LA, BF135AK0 XA, BF150A4 LA, BF150A4 XA, BF150A5 LA, BF150A5 XA, BF150A6 LA, BF150A6 XA, BF150AK0 LA, BF150AK0 XA, BF200A2 LA, BF200A2 XA, BF200A2 XXA, BF200A3 LA, BF200
58133-ZY3-A23S
58133-ZY3-A23S PROPELLER, THREE-BLADE (Honda Code 6627814). (14-1/2X23) (SUS)
BF115DK1 LA, BF115DK1 XA, BF135A4 LA, BF135A4 XA, BF135A5 LA, BF135A5 XA, BF135A6 LA, BF135A6 XA, BF135AK0 LA, BF135AK0 XA, BF135AK2 LA, BF135AK2 XA, BF150A4 LA, BF150A4 XA, BF150A5 LA, BF150A5 XA, BF150A6 LA, BF150A6 XA, BF150AK0 LA, BF150AK0 XA, BF
58133-ZY3-A15AH
58133-ZY3-A15AH PROPELLER, THREE-BLADE (Honda Code 6627970). (14-1/2X15) (SUS)
BF115DK1 LA, BF115DK1 XA, BF135A4 LA, BF135A4 XA, BF135A5 LA, BF135A5 XA, BF135A6 LA, BF135A6 XA, BF135AK0 LA, BF135AK0 XA, BF135AK2 LA, BF135AK2 XA, BF150A4 LA, BF150A4 XA, BF150A5 LA, BF150A5 XA, BF150A6 LA, BF150A6 XA, BF150AK0 LA, BF150AK0 XA, BF
58130-ZY3-V11ZA
58130-ZY3-V11ZA PROPELLER, THREE-BLADE (15-1/4X15) *NH283* (AL) (STIN GRAY)
BF115DK1 LA, BF115DK1 XA, BF135AK0 LA, BF135AK0 XA, BF135AK2 LA, BF135AK2 XA, BF150AK0 LA, BF150AK0 XA, BF150AK2 LA, BF150AK2 XA, BF175AK1 LA, BF175AK1 XA, BF175AK2 LA, BF175AK2 XA, BF200AK0 LA, BF200AK0 XA, BF200AK1 LA, BF200AK1 XA, BF200AK2 LA, BF2
58130-ZY3-V31ZA
58130-ZY3-V31ZA PROPELLER, THREE-BLADE (14-3/4X19) *NH283* (AL) (STIN GRAY)
BF115DK1 LA, BF115DK1 XA, BF135AK0 LA, BF135AK0 XA, BF135AK2 LA, BF135AK2 XA, BF150AK0 LA, BF150AK0 XA, BF150AK2 LA, BF150AK2 XA, BF175AK1 LA, BF175AK1 XA, BF175AK2 LA, BF175AK2 XA, BF200AK0 LA, BF200AK0 XA, BF200AK1 LA, BF200AK1 XA, BF200AK2 LA, BF2