865074 Spacer sleeve Volvo.Penta
D8A1-A MP; D8A2-A MP, TAD1230G; TD1210G; TWD1210G, TAD1230P; TD121GP-87; TWD1210P, TAD1240GE; TAD1241GE; TAD1242GE, TAD570VE; TAD571VE; TAD572VE, TD120HP-86; TD121; TD121G, TD121G-87; TWD1210V; TWD1211V, TWD1230ME, TWD1240VE; TAD1241VE; TAD1242VE
Spacer
Price: query
Rating:
Compatible models:
Volvo Penta entire parts catalog list:
TAD1230G; TD1210G; TWD1210G; TWD1211G; TAD1231GE; TAD1232GE
TAD1230P; TD121GP-87; TWD1210P; TWD1211P; TD1210G; TWD1210G; TWD1211G; TD121GP
TAD1240GE; TAD1241GE; TAD1242GE
TAD570VE; TAD571VE; TAD572VE
TD120HP-86; TD121; TD121G; TD121G-87; TD121GG; TD121GG-86; TD121GG-87; TD121GGP; TD121GGP-87; TD121GP-87; TD121GPB-87; TID121K; TID121KG; TID
TD121G-87; TWD1210V; TWD1211V; TAD1230V; TWD1230VE; TWD1231VE
- Inlet Manifold with Intercooler, High Mounted Turbo: A
- Inlet Manifold with Intercooler, High Mounted Turbo: B
- Inlet Manifold with Intercooler, Low Mounted Turbo: A
- Inlet Manifold with Intercooler, Low Mounted Turbo: B
- Inlet Manifold with Intercooler, High Mounted Turbo
- Inlet Manifold with Intercooler, low mounted Turbo
Information:
Cylinder Head Assembly
The cylinder heads are a one-piece cast iron head. Two inlet valves and two exhaust valves, which are controlled by a pushrod valve system, are used for each cylinder. Valve guides without shoulders are pressed into the cylinder heads. The opening for the direct injection adapter is located between the four valves. Series ports are used for both inlet and exhaust valves.The valve lifters can be removed without the removal of the head. The removal can be made because of the size of the pushrod openings through the head.Pistons, Rings And Connecting Rods
The piston is an aluminum piston. The crown of the piston carries all three piston rings. Oil from the piston cooling jets flows through a chamber which is located directly behind the rings. The oil cools the piston which improves the life of the rings. The pistons have three rings which include two compression rings and one oil ring. All the rings are located above the piston pin bore. The oil ring is a standard ring. Oil returns to the crankcase through holes in the oil ring groove. The top two rings are the Keystone rings, which are tapered.The piston is designed for a direct injection engine. The piston has a cardioid design on the top surface. This piston design helps to improve combustion efficiency. The piston pin is held in place by two snap rings. These snap rings fit in grooves in the pin bore of the piston.The connecting rod has a taper on the pin bore end. This taper gives the rod and the piston more strength in the areas with the most load.Crankshaft
The crankshaft changes the combustion forces in the cylinder into usable rotating torque which powers the equipment. A vibration damper is used at the front of the crankshaft in order to reduce torsional vibrations (twist) that can cause damage to the engine.The crankshaft drives a group of gears (front gear train) on the front of the engine. The front gear train provides power for the following components: timing gears and oil pump. Seals and wear sleeves are used at both ends of the crankshaft. The seals and wear sleeves are used for easy replacement and reduction of maintenance cost. Pressure oil is supplied to all bearing surfaces through drilled holes in the webs of the cylinder block. The oil then flows through drilled holes in the crankshaft in order to provide oil to the connecting rod bearings. The crankshaft of the 3412E engine is held in place by seven main bearings. A thrust plate at either side of the center main bearing controls the end play of the crankshaft.Camshaft
The engine has a single camshaft that is driven at the front end. The camshaft is supported by seven bearings for the 3412E. As the camshaft turns, the camshaft lobes move a lifter assembly. The camshaft lobe moves either two inlet valves or two exhaust valves for each cylinder. The camshaft must be in time with the crankshaft. The relation of the camshaft lobes to the crankshaft position causes the valves and injectors in each cylinder to operate at the correct time.Vibration Damper
Illustration 1 g01053166
Cross section of the vibration damper (typical example) (1) Flywheel ring gear (2) Rubber ring (3) Inner hubThe twisting of the camshaft is called torsional vibration. The torsional vibration is caused by the regular power impacts along the length of the crankshaft. The vibration damper is installed on the front end of the crankshaft. This vibration damper is used to reduce the torsional vibrations. This eliminates any damage that could occur to the crankshaft.The damper is made of a flywheel ring gear (1) connected to an inner hub (3) by a rubber ring (2). The rubber makes a flexible coupling between the flywheel ring gear and the inner hub.
The cylinder heads are a one-piece cast iron head. Two inlet valves and two exhaust valves, which are controlled by a pushrod valve system, are used for each cylinder. Valve guides without shoulders are pressed into the cylinder heads. The opening for the direct injection adapter is located between the four valves. Series ports are used for both inlet and exhaust valves.The valve lifters can be removed without the removal of the head. The removal can be made because of the size of the pushrod openings through the head.Pistons, Rings And Connecting Rods
The piston is an aluminum piston. The crown of the piston carries all three piston rings. Oil from the piston cooling jets flows through a chamber which is located directly behind the rings. The oil cools the piston which improves the life of the rings. The pistons have three rings which include two compression rings and one oil ring. All the rings are located above the piston pin bore. The oil ring is a standard ring. Oil returns to the crankcase through holes in the oil ring groove. The top two rings are the Keystone rings, which are tapered.The piston is designed for a direct injection engine. The piston has a cardioid design on the top surface. This piston design helps to improve combustion efficiency. The piston pin is held in place by two snap rings. These snap rings fit in grooves in the pin bore of the piston.The connecting rod has a taper on the pin bore end. This taper gives the rod and the piston more strength in the areas with the most load.Crankshaft
The crankshaft changes the combustion forces in the cylinder into usable rotating torque which powers the equipment. A vibration damper is used at the front of the crankshaft in order to reduce torsional vibrations (twist) that can cause damage to the engine.The crankshaft drives a group of gears (front gear train) on the front of the engine. The front gear train provides power for the following components: timing gears and oil pump. Seals and wear sleeves are used at both ends of the crankshaft. The seals and wear sleeves are used for easy replacement and reduction of maintenance cost. Pressure oil is supplied to all bearing surfaces through drilled holes in the webs of the cylinder block. The oil then flows through drilled holes in the crankshaft in order to provide oil to the connecting rod bearings. The crankshaft of the 3412E engine is held in place by seven main bearings. A thrust plate at either side of the center main bearing controls the end play of the crankshaft.Camshaft
The engine has a single camshaft that is driven at the front end. The camshaft is supported by seven bearings for the 3412E. As the camshaft turns, the camshaft lobes move a lifter assembly. The camshaft lobe moves either two inlet valves or two exhaust valves for each cylinder. The camshaft must be in time with the crankshaft. The relation of the camshaft lobes to the crankshaft position causes the valves and injectors in each cylinder to operate at the correct time.Vibration Damper
Illustration 1 g01053166
Cross section of the vibration damper (typical example) (1) Flywheel ring gear (2) Rubber ring (3) Inner hubThe twisting of the camshaft is called torsional vibration. The torsional vibration is caused by the regular power impacts along the length of the crankshaft. The vibration damper is installed on the front end of the crankshaft. This vibration damper is used to reduce the torsional vibrations. This eliminates any damage that could occur to the crankshaft.The damper is made of a flywheel ring gear (1) connected to an inner hub (3) by a rubber ring (2). The rubber makes a flexible coupling between the flywheel ring gear and the inner hub.
Parts spacer Volvo Penta:
836838
836838 Spacer sleeve
AQD70D; TAMD70D; TAMD70E, MD120A; MD120AK; TMD120A, TAD1630P; TWD1630P; TWD1630PP, TD100CHC; TD100CRC; TD121CHC, TD120AHC; TD120ARC; TAD120AHC, TWD1230ME
855773
855773 Spacer sleeve
D11A-A; D11A-B; D11A-C, D13B-E MH; D13B-E MH (FE); D13B-N MH, D13B-F MG; D13B-E MG; D13B-E MG (FE), D8A1-A MP; D8A2-A MP, D9A2A; D9A2A D9-425; D9A2A D9-500, TAD1640GE; TAD1641GE; TAD1642GE, TAMD74A; TAMD74A-A; TAMD74A-B
949873
949873 Spacer washer
D12D-A MG; D12D-E MG, D12D-A MH; D12D-B MH; D12D-C MH, DH10A; DH10A 285; DH10A 360, TAD1240GE; TAD1241GE; TAD1242GE, TWD1240VE; TAD1241VE; TAD1242VE
993796
993796 Spacer
D8A1-A MP; D8A2-A MP, TAD540-42VE; TAD550-51VE; TAD540VE, TAD570VE; TAD571VE; TAD572VE, TAD840VE; TAD841VE; TAD842VE, TAD870VE; TAD871VE; TAD872VE
948072
948072 Spacer sleeve
D8A1-A MP; D8A2-A MP, TAD1140VE; TAD1141VE; TAD1142VE, TAD1150VE; TAD1151VE; TAD1152VE, TAD1170VE; TAD1171VE; TAD1172VE, TAD540-42VE; TAD550-51VE; TAD540VE, TAD570VE; TAD571VE; TAD572VE, TAD840VE; TAD841VE; TAD842VE, TAD870VE; TAD871VE; TAD872VE
233072
233072 Spacer
D100A; D100AK; D100B, MD70C; TMD70C; TAMD70C, TAD1230P; TD121GP-87; TWD1210P, TAMD162A; TAMD162B; TAMD162C, TD100G-87; TD1030ME; TWD1030ME, TD100G-87; TD1030VE; TAD1030V, TD100G; TD100G-85; TD100G-87, TD121G-87; TWD1210V; TWD1211V, TD30A; TD31ACE; TD
822255
822255 Spacer sleeve
AQ200B; AQ225B, AQ200C; AQ200D; AQ225C, AQ290A, D100A; D100AK; D100B, D120A; D120AK; TD120A, D70B; D70B PP; D70B K, TAMD103A, TAMD71A; TAMD72A, TAMD71B; TAMD73P-A; TAMD73WJ-A, TAMD74A; TAMD74A-A; TAMD74A-B, TD100G-87; TD1030ME; TWD1030ME, TD100G-87;
252202
252202 Spacer sleeve
D12D-A MG; D12D-E MG, D5A-T; D5A-TA; D5A-B TA, DH10A; DH10A 285; DH10A 360, TAD1030G; TD1010G; TWD1010G, TAD1030GE; TAD1031GE; TAD1032GE, TAD1030P, TAD1230G; TD1210G; TWD1210G, TAD1230P; TD121GP-87; TWD1210P, TAD1630P; TWD1630P; TWD1630PP, TAD1630V;