20555065 Hex. socket screw Volvo.Penta
TAD520VE; TAD720VE; TAD721VE, TAD650VE; TAD660VE, TAD750VE; TAD760VE
Hex
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Volvo Penta entire parts catalog list:
- Flexible Engine Suspension » 20555065
- Bracket for Fan. 220mm Fan Height. Ratio 1:1,0 SN-10708332
- Bracket for Fan. 220mm Fan Height. Ratio 1:1,0 SN10708333-
- Bracket for Fan. 220mm Fan Height. Ratio 1:0.9 SN-10709642
- Bracket for Fan. 220mm Fan Height. Ratio 1:0.9 SN10709643-
- Bracket for Fan. 220mm Fan Height. Ratio 1:1,2 SN-10709631
- Bracket for Fan. 220mm Fan Height. Ratio 1:1,2 SN10709632-
- Bracket for Fan. 290mm Fan Height. Ratio 1:1,0 SN-10708332
- Bracket for Fan. 290mm Fan Height. Ratio 1:1,0 SN10708333-
- Bracket for Fan. 290mm Fan Height. Ratio 1:1,2 SN-10709631
- Bracket for Fan. 290mm Fan Height. Ratio 1:1,2 SN10709632-
- Bracket for Fan. 360mm Fan Height. Ratio 1:1,0 SN-10708332
- Bracket for Fan. 360mm Fan Height. Ratio 1:1,0 SN10708333-
- Bracket for Fan. 360mm Fan Height. Ratio 1:1,2 SN-10709631
- Bracket for Fan. 360mm Fan Height. Ratio 1:1,2 SN10709632-
- Flexible Engine Suspension
- Bracket for Fan. with or without Crankshaft Mounted Fan
- Bracket for Fan. 210mm Fan Height. Ratio 1:0,8 SN-10710118
- Bracket for Fan. 210mm Fan Height. Ratio 1:0,8 SN10710119-
- Bracket for Fan. 210mm Fan Height. Ratio 1:1.0 SN-10708164
- Bracket for Fan. 210mm Fan Height. Ratio 1:1.0 SN10708165-
- Bracket for Fan. 210mm Fan Height. Ratio 1:1,26 SN-10709632
- Bracket for Fan. 210mm Fan Height. Ratio 1:1,26 SN10709633-
- Bracket for Fan. 234mm Fan Height. Ratio 1:0,8 SN-10710118
- Bracket for Fan. 234mm Fan Height. Ratio 1:0,8 SN10710119-
- Bracket for Fan. 234mm Fan Height. Ratio 1:1,0 SN-10708164
- Bracket for Fan. 234mm Fan Height. Ratio 1:1,0 SN10708165-
- Bracket for Fan. 234mm Fan Height. Ratio 1:1,26 SN-10709631
- Bracket for Fan. 234mm Fan Height. Ratio 1:1,26 SN10709632-
- Bracket for Fan. 292mm Fan Height. Ratio 1:0.8 SN-10710118
- Bracket for Fan. 292mm Fan Height. Ratio 1:0.8 SN10710119-
- Bracket for Fan. 292mm Fan Height. Ratio 1:1,0 SN-10708164
- Bracket for Fan. 292mm Fan Height. Ratio 1:1,0 SN10708165-
- Bracket for Fan. 292mm Fan Height. Ratio 1:1,26 SN-10709631
- Bracket for Fan. 292mm Fan Height. Ratio 1:1,26 SN10709632-
- Bracket for Fan. 398mm Fan Height. Ratio 1:0.8 SN-10710118
- Bracket for Fan. 398mm Fan Height. Ratio 1:0.8 SN10710119-
- Bracket for Fan. 398mm Fan Height. Ratio 1:1.0 SN-10708164
- Bracket for Fan. 398mm Fan Height. Ratio 1:1.0 SN10708165-
- Bracket for Fan. 398mm Fan Height. Ratio 1:1.26 SN-10709631
- Bracket for Fan. 398mm Fan Height. Ratio 1:1.26 SN10709632-
Information:
Engine Design
Cylinder And Valve LocationBore ... 120.7 mm (4.75 in.)Stroke ... 152.4 mm (6.00 in.)Number of Cylinders ... 6Cylinder Arrangement ... in lineValves per Cylinder ... 2Combustion ... Direct InjectionFiring Order (Injection Sequence) ... 1, 5, 3, 6, 2, 4Rotation of Crankshaft (when seen from flywheel end) ... counterclockwise The No. 1 cylinder is opposite the flywheel end.Fuel System
Fuel Flow
Fuel System Schematic
(1) Fuel tank. (2) Fuel return line. (3) Priming pump. (4) Fuel injection nozzle. (5) Fuel injection line. (6) Fuel injection pump. (7) Primary fuel filter. (8) Check valves. (9) Fuel transfer pump. (10) Secondary fuel filter. (11) Constant bleed valve. (12) Fuel injection pump housing.Fuel is pulled from fuel tank (1) through primary fuel filter (7) and check valves (8) by fuel transfer pump (9). From the fuel transfer pump the fuel is pushed through secondary fuel filter (10) and to the fuel manifold in fuel injection pump housing (12). A bypass valve in the fuel transfer pump keeps the fuel pressure in the system at 25 to 40 psi (170 to 280 kPa). Constant bleed valve (11) lets a constant flow of fuel go through fuel return line (2) back to fuel tank (1). The constant bleed valve returns approximately 9 gal. (34 liters) per hour of fuel and air to the fuel tank. This helps keep the fuel cool and free of air. There is also a manual bleed valve that can be used when the fuel priming pump is used to remove air from the system. Fuel injection pump (6) gets fuel from the fuel manifold and pushes fuel at very high pressure through fuel line (5) to fuel injection nozzle (4). The fuel injection nozzle has very small holes in the tip that change the flow of fuel to a very fine spray that gives good fuel combustion in the cylinder.Fuel Injection Pump
The fuel injection pump increases the pressure of the fuel and sends an exact amount of fuel to the fuel injection nozzle. There is one fuel injection pump for each cylinder in the engine.The fuel injection pump is moved by cam (14) of the fuel pump camshaft. When the camshaft turns, the cam raises lifter (11) and pump plunger (6) to the top of the stroke. The pump plunger always makes a full stroke. As the camshaft turns farther, spring (8) returns the pump plunger and lifter to the bottom of the stroke.When the pump plunger is at the bottom of the stroke, fuel at transfer pump pressure goes into inlet passage (2), around pump barrel (4) and to bypass closed port (5). Fuel fills the area above the pump plunger.After the pump plunger begins the up stroke, fuel will be pushed out the bypass closed port until the top of the pump plunger closes the port. As the pump plunger travels farther up, the pressure of the fuel increases. At approximately 100 psi (690 kPa), check valve (1) opens and lets fuel flow into the fuel injection line to the fuel injection nozzle. When the pump plunger travels farther up, scroll (9) uncovers spill port (10). The fuel above the pump plunger goes through slot (7), along the edge of scroll (9) and out spill port (10) back to fuel manifold (3). This is the end of the injection stroke. The pump plunger can have more travel up, but no more fuel will be sent to the fuel injection nozzle.
Fuel Injection Pump
(1) Check valve. (2) Inlet passage. (3) Fuel manifold. (4) Pump barrel. (5) Bypass closed port. (6) Pump plunger. (7) Slot. (8) Spring. (9) Scroll. (10) Spill port. (11) Lifter. (12) Fuel rack. (13) Gear. (14) Cam.When the pump plunger travels down and uncovers bypass closed port (5), fuel begins to fill the area above the pump plunger again, and the pump is ready to begin another stroke.The amount of fuel the injection pump sends to the injection nozzle is changed by the rotation of the pump plunger. Gear (13) is attached to the pump plunger and is in mesh with fuel rack (12). The governor moves the fuel rack according to the fuel needs of the engine. When the governor moves the fuel rack, and the fuel rack turns the pump plunger, scroll (9) changes the distance the pump plunger pushes fuel between bypass closed port (5) and spill port (10) opening. The longer the distance from the top of the pump plunger to the point where scroll (9) uncovers spill port (10), the more fuel will be injected.To stop the engine, the pump plunger is rotated so that slot (7) on the pump plunger is in line with spill port (10). The fuel will now go out the spill port and not to the injection nozzle.Fuel Injection Nozzle
The fuel injection nozzle goes through the cylinder head into the combustion chamber. The fuel injection pump sends fuel with high pressure to the fuel injection nozzle where the fuel is made into a fine spray for good combustion.
Fuel Injection Nozzle
(1) Carbon dam. (2) Seal. (3) Passage. (4) Filter screen. (5) Orifice. (6) Valve. (7) Diameter. (8) Spring.Seal (2) goes against the cylinder head and prevents leakage of compression from the cylinder. Carbon dam (1) keeps carbon out of the bore in the cylinder head for the nozzle.Fuel with high pressure from the fuel injection pump goes into the inlet passage. Fuel then goes through filter screen (4) and into passage (3) to the area below diameter (7) of valve (6). When the pressure of the fuel that pushes against diameter (7) becomes greater than the force of spring (8), valve (6) lifts up. This occurs when the fuel pressure goes above the Valve Opening Pressure of the fuel injection nozzle. When valve (6) lifts, the tip of the valve comes off the nozzle seat and the fuel will go through orifices (5) into the combustion chamber.The injection of fuel continues until the pressure of fuel against diameter (7) becomes less than the force of spring (8). With
Cylinder And Valve LocationBore ... 120.7 mm (4.75 in.)Stroke ... 152.4 mm (6.00 in.)Number of Cylinders ... 6Cylinder Arrangement ... in lineValves per Cylinder ... 2Combustion ... Direct InjectionFiring Order (Injection Sequence) ... 1, 5, 3, 6, 2, 4Rotation of Crankshaft (when seen from flywheel end) ... counterclockwise The No. 1 cylinder is opposite the flywheel end.Fuel System
Fuel Flow
Fuel System Schematic
(1) Fuel tank. (2) Fuel return line. (3) Priming pump. (4) Fuel injection nozzle. (5) Fuel injection line. (6) Fuel injection pump. (7) Primary fuel filter. (8) Check valves. (9) Fuel transfer pump. (10) Secondary fuel filter. (11) Constant bleed valve. (12) Fuel injection pump housing.Fuel is pulled from fuel tank (1) through primary fuel filter (7) and check valves (8) by fuel transfer pump (9). From the fuel transfer pump the fuel is pushed through secondary fuel filter (10) and to the fuel manifold in fuel injection pump housing (12). A bypass valve in the fuel transfer pump keeps the fuel pressure in the system at 25 to 40 psi (170 to 280 kPa). Constant bleed valve (11) lets a constant flow of fuel go through fuel return line (2) back to fuel tank (1). The constant bleed valve returns approximately 9 gal. (34 liters) per hour of fuel and air to the fuel tank. This helps keep the fuel cool and free of air. There is also a manual bleed valve that can be used when the fuel priming pump is used to remove air from the system. Fuel injection pump (6) gets fuel from the fuel manifold and pushes fuel at very high pressure through fuel line (5) to fuel injection nozzle (4). The fuel injection nozzle has very small holes in the tip that change the flow of fuel to a very fine spray that gives good fuel combustion in the cylinder.Fuel Injection Pump
The fuel injection pump increases the pressure of the fuel and sends an exact amount of fuel to the fuel injection nozzle. There is one fuel injection pump for each cylinder in the engine.The fuel injection pump is moved by cam (14) of the fuel pump camshaft. When the camshaft turns, the cam raises lifter (11) and pump plunger (6) to the top of the stroke. The pump plunger always makes a full stroke. As the camshaft turns farther, spring (8) returns the pump plunger and lifter to the bottom of the stroke.When the pump plunger is at the bottom of the stroke, fuel at transfer pump pressure goes into inlet passage (2), around pump barrel (4) and to bypass closed port (5). Fuel fills the area above the pump plunger.After the pump plunger begins the up stroke, fuel will be pushed out the bypass closed port until the top of the pump plunger closes the port. As the pump plunger travels farther up, the pressure of the fuel increases. At approximately 100 psi (690 kPa), check valve (1) opens and lets fuel flow into the fuel injection line to the fuel injection nozzle. When the pump plunger travels farther up, scroll (9) uncovers spill port (10). The fuel above the pump plunger goes through slot (7), along the edge of scroll (9) and out spill port (10) back to fuel manifold (3). This is the end of the injection stroke. The pump plunger can have more travel up, but no more fuel will be sent to the fuel injection nozzle.
Fuel Injection Pump
(1) Check valve. (2) Inlet passage. (3) Fuel manifold. (4) Pump barrel. (5) Bypass closed port. (6) Pump plunger. (7) Slot. (8) Spring. (9) Scroll. (10) Spill port. (11) Lifter. (12) Fuel rack. (13) Gear. (14) Cam.When the pump plunger travels down and uncovers bypass closed port (5), fuel begins to fill the area above the pump plunger again, and the pump is ready to begin another stroke.The amount of fuel the injection pump sends to the injection nozzle is changed by the rotation of the pump plunger. Gear (13) is attached to the pump plunger and is in mesh with fuel rack (12). The governor moves the fuel rack according to the fuel needs of the engine. When the governor moves the fuel rack, and the fuel rack turns the pump plunger, scroll (9) changes the distance the pump plunger pushes fuel between bypass closed port (5) and spill port (10) opening. The longer the distance from the top of the pump plunger to the point where scroll (9) uncovers spill port (10), the more fuel will be injected.To stop the engine, the pump plunger is rotated so that slot (7) on the pump plunger is in line with spill port (10). The fuel will now go out the spill port and not to the injection nozzle.Fuel Injection Nozzle
The fuel injection nozzle goes through the cylinder head into the combustion chamber. The fuel injection pump sends fuel with high pressure to the fuel injection nozzle where the fuel is made into a fine spray for good combustion.
Fuel Injection Nozzle
(1) Carbon dam. (2) Seal. (3) Passage. (4) Filter screen. (5) Orifice. (6) Valve. (7) Diameter. (8) Spring.Seal (2) goes against the cylinder head and prevents leakage of compression from the cylinder. Carbon dam (1) keeps carbon out of the bore in the cylinder head for the nozzle.Fuel with high pressure from the fuel injection pump goes into the inlet passage. Fuel then goes through filter screen (4) and into passage (3) to the area below diameter (7) of valve (6). When the pressure of the fuel that pushes against diameter (7) becomes greater than the force of spring (8), valve (6) lifts up. This occurs when the fuel pressure goes above the Valve Opening Pressure of the fuel injection nozzle. When valve (6) lifts, the tip of the valve comes off the nozzle seat and the fuel will go through orifices (5) into the combustion chamber.The injection of fuel continues until the pressure of fuel against diameter (7) becomes less than the force of spring (8). With
Parts hex Volvo Penta:
20451738
20451738 Hex. socket sunk scr
D5A-T; D5A-TA; D5A-B TA, D5A-T; D5A-TA; D5A-B TA, TAD520GE; TAD720GE; TAD721GE, TAD520VE; TAD720VE; TAD721VE, TAD550GE; TAD551GE; TAD750GE, TAD650VE; TAD660VE, TAD750VE; TAD760VE, TD420VE; TAD420VE; TAD620VE, TD520GE; TAD530GE; TAD531GE, TD520VE; TD7
20450912
20450912 Hex. socket screw
D5A-T; D5A-TA; D5A-B TA, D5A-T; D5A-TA; D5A-B TA, TAD520GE; TAD720GE; TAD721GE, TAD520VE; TAD720VE; TAD721VE, TD520GE; TAD530GE; TAD531GE, TD520VE; TD720VE
20459263
20459263 Hex. socket screw
D5A-T; D5A-TA; D5A-B TA, TAD520GE; TAD720GE; TAD721GE, TAD520VE; TAD720VE; TAD721VE, TAD550GE; TAD551GE; TAD750GE, TAD560VE; TAD561VE; TAD761VE, TAD650VE; TAD660VE, TAD734GE, TAD750VE; TAD760VE, TD420VE; TAD420VE; TAD620VE, TD520GE; TAD530GE; TAD531G
20450822
20450822 Hex. socket screw
D5A-T; D5A-TA; D5A-B TA, D5A-T; D5A-TA; D5A-B TA, TAD520VE; TAD720VE; TAD721VE, TAD560VE; TAD561VE; TAD761VE, TAD650VE; TAD660VE, TAD750VE; TAD760VE, TD420VE; TAD420VE; TAD620VE
21077470
21077470 Hex. socket screw
D5A-T; D5A-TA; D5A-B TA, D5A-T; D5A-TA; D5A-B TA, TAD520VE; TAD720VE; TAD721VE, TAD650VE; TAD660VE, TAD750VE; TAD760VE, TD420VE; TAD420VE; TAD620VE
20555061
20555061 Hex. socket screw
TAD520GE; TAD720GE; TAD721GE, TAD520VE; TAD720VE; TAD721VE, TAD550GE; TAD551GE; TAD750GE, TAD560VE; TAD561VE; TAD761VE, TAD650VE; TAD660VE, TAD750VE; TAD760VE, TD520GE; TAD530GE; TAD531GE
20554913
20554913 Hex. socket screw
TAD520GE; TAD720GE; TAD721GE, TAD520VE; TAD720VE; TAD721VE, TD420VE; TAD420VE; TAD620VE, TD520GE; TAD530GE; TAD531GE
20459903
20459903 Hex. socket screw
TAD520GE; TAD720GE; TAD721GE, TAD520VE; TAD720VE; TAD721VE, TD420VE; TAD420VE; TAD620VE, TD520GE; TAD530GE; TAD531GE