0336867 NUT, Screw, brkt EVINRUDE
BE115GLECM, BE115TLEDA, BE150ELECD, BE150ELEDB, BE150ELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE40EEDS, BE40EEUC, BE50BEEDS, BE50RLEUC, BE90SLECM, E100STLEIE, E100STLEND, E100STLERC, E100STLETS, E115JKLEOC, E115JKLERS, E115JLEIE, E115JLEND, E115JLE
NUT
Price: query
Rating:
Compatible models:
BE115GLECM
BE115TLEDA
BE150ELECD
BE150ELEDB
BE150ELEUC
BE175EXECD
BE175EXEDB
BE175EXEUC
BE40EEDS
BE40EEUC
BE50BEEDS
BE50RLEUC
BE90SLECM
E100STLEIE
E100STLEND
E100STLERC
E100STLETS
E115JKLEOC
E115JKLERS
E115JLEIE
E115JLEND
E115JLEOR
E115JLERC
E115JLETS
E115JLEUM
E150CXEIE
E150ELENC
E150ELEOM
E150ELERA
E150ELETG
E175EXARC
E175EXATG
E175EXENC
E175EXEOM
E175STLEID
E40EEIA
E40EENJ
E40EEOD
E40EERE
E40EETB
E50BEEIA
E50BEENJ
E50BEEOD
E50BEERE
E50BEETB
E85TTLEOR
E85TTLERC
E88MSLEDC
E88MSLEIM
E88MSLENB
E88MSLEOS
E88MSLERD
E88MSLETE
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- JET DRIVE UNIT » 0336867
BE150ELECD, BE150EXECD, BE150GLECD, BE150NXECD, E150ELECD, E150EXECD, E150GLECD, E150JLECD, E150NXECD, E150SLECD, L150GLECA 1998
BE150ELEDB, BE150EXEDB, BE150GLEDB, BE150NXEDB, E150ELEDB, E150EXEDB, E150GLEDB, E150JLEDB, E150NXEDB, E150SLEDB, L150GLEDC 1996
BE150ELEUC, BE150ELEUE, BE150EXEUC, BE150EXEUE, BE150GLEUC, BE150GLEUE, BE150NXEUC, BE150NXEUE, E150ELEUC, E150ELEUE, E150EXEUC, E150EXEUE, E150GLEUC, E150GLEUE, E150JLEUC, E150JLEUE, E150NXEUC, E150NXEUE, E150SLEUC, E150SLEUE, L150GLEUC, L150GLEUR 1997
BE175EXECD, BE175GLECD, BE175NXECD, E175EXECD, E175GLECD, E175NXECD, E175SLECD 1998
BE175EXEDB, BE175GLEDB, BE175NXEDB, E175EXEDB, E175GLEDB, E175NXEDB, E175SLEDB 1996
BE175EXEUC, BE175EXEUE, BE175GLEUC, BE175GLEUE, BE175NXEUC, BE175NXEUE, E175EXEUC, E175EXEUE, E175GLEUC, E175GLEUE, E175NXEUC, E175NXEUE, E175SLEUC, E175SLEUE 1997
BE40EEDS, BE40ELEDS, BE40TLEDS, E40ELEDS, E40REDS, E40RLEDS, E40TEEDS, E40TELEDS, E40TLEDS, E40TTLEDS, HE40REDS, HE40RLEDS 1996
BE40EEUC, BE40ELEUC, BE40TLEUC, E40ELEUC, E40REUC, E40RLEUC, E40TEEUC, E40TELEUC, E40TLEUC, E40TTLEUC, HE40REUC, HE40RLEUC 1997
BE50BEEDS, BE50BELEDS, BE50TLEDS, E50JEDS, E50TLEDS, SE50TLEDS 1996
BE50RLEUC, BE50TLEUC, BE50TSLEUS, E50ESLEUR, E50JEUC, E50TLEUC, E50TSLEUS 1997
BE90SLECM, BE90SXECM, E90ELECM, E90SLECM, L90GLECS 1998
E100STLEIE, VE100SLEIE 1991
E100STLEND, VE100SLEND 1992
E100STLERC 1994
E100STLETS, VE100SLETS 1993
E115JKLEOC 1995
E115JKLERS 1994
E115JLEIE, E115MLEIE, E115TLEIE, E115TXEIE, TE115TLEIE, VE115TLEIE, VE115TXEIE 1991
E115JLEND, E115MLEND, E115TLEND, E115TXEND, TE115TLEND 1992
E115JLEOR, E115MLEOR, E115TLEOR, E115TXAOR 1995
E115JLERC, E115MLERS, E115TLERC, E115TXARS 1994
E115JLETS, E115MLETS, E115TLETS, E115TXATS, TE115TLETS, VE115TLETS 1993
E115JLEUM 1997
E150CXEIE, E150JLEIE, E150TLEIE, E150TXEIE, VE150TLEIE, VE150TXEIE 1991
E150ELENC, E150EXENC, E150GLENC, E150JLENC, E150NXENC, TE150GLENC, VE150ELENC, VE150EXENC 1992
E150ELEOM, E150EXEOM, E150GLEOM, E150JLEOM, E150NXEOM, E150SLEOM, L150GLEOS, VE150HLEOS 1995
E150ELERA, E150ELERV, E150EXARC, E150EXARV, E150EXERA, E150EXERV, E150GLERA, E150GLERV, E150JLERA, E150JLERV, E150NXARC, E150NXARV, E150NXERA, E150NXERV 1994
E150ELETG, E150ELETR, E150EXATG, E150EXATS, E150EXETG, E150EXETR, E150GLETG, E150GLETR, E150JLETG, E150JLETR, E150NXATG, E150NXATS, E150NXETG, E150NXETR, TE150GLETG, TE150GLETR, VE150ELETG, VE150ELETR, VE150EXETG, VE150EXETR, VE150GLETG, VE150GLETR 1993
E175EXARC, E175EXARV, E175EXERA, E175EXERV, E175GLERA, E175NXARC, E175NXARV, E175NXERA, E175NXERV, E175SLERA 1994
E175EXATG, E175EXATS, E175EXETG, E175EXETR, E175GLETG, E175GLETR, E175NXATG, E175NXATS, E175NXETG, E175NXETR, VE175EXETG, VE175EXETR, VE175GLETG, VE175GLETR 1993
E175EXENC, E175GLENC, E175NXENC, VE175EXENC, VE175GLENC 1992
E175EXEOM, E175GLEOM, E175NXEOM, E175SLEOM 1995
E175STLEID, E175TXEID, VE175SLEID, VE175TXEID 1991
E40EEIA, E40ELEIA, E40REIA, E40RLEIA, E40TEEIA, E40TELEIA, E40TLEIA, E40TTLEIA, TE40ELEIA, VE40EEIA, VE40ELEIA, VE40TELEIA, VE40TLEIA 1991
E40EENJ, E40EENM, E40ELENJ, E40ELENM, E40RENM, E40RLENM, E40TEENJ, E40TEENM, E40TELENJ, E40TELENM, E40TLENJ, E40TLENM, E40TTLENM, TE40ELENJ, TE40ELENM, VE40EENJ, VE40EENM, VE40ELENJ, VE40ELENM, VE40TELENJ, VE40TELENM, VE40TLENJ, VE40TLENM 1992
E40EEOD, E40ELEOD, E40REOD, E40RLEOD, E40TEEOD, E40TELEOD, E40TLEOD, E40TTLEOD 1995
E40EERE, E40ELERE, E40RERE, E40RLERE, E40TEERE, E40TELERE, E40TLERE, E40TTLERE 1994
E40EETB, E40ELETB, E40RETB, E40RLETB, E40TEETB, E40TELETB, E40TLETB, E40TLETF, E40TTLETB, E40TTLETF, TE40ELETB, VE40EETB, VE40ELETB, VE40TELETB, VE40TLETB, VE40TLETF 1993
E50BEEIA, E50BELEIA, E50JEIA, E50TELEIA, E50TLEIA, VE50BEEIA, VE50BELEIA, VE50TLEIA 1991
E50BEENJ, E50BEENM, E50BELENJ, E50BELENM, E50JENJ, E50JENM, E50TELENM, E50TLENJ, E50TLENM, VE50BEENJ, VE50BEENM, VE50BELENJ, VE50BELENM, VE50TELENM, VE50TLENJ, VE50TLENM 1992
E50BEEOD, E50BELEOD, E50JEOD, E50TELEOD, E50TLEOD 1995
E50BEERE, E50BELERE, E50JERE, E50TELERE, E50TLERE 1994
E50BEETB, E50BELETB, E50JETB, E50TELETB, E50TLETB, E50TLETF, VE50BEETB, VE50BELETB, VE50TLETB, VE50TLETF 1993
E85TTLEOR 1995
E85TTLERC 1994
BE90TLEDA, E88MSLEDC, E90TLEDA, HE88MSLEDC, HE90MLEDA, HE90TXADA 1996
E88MSLEDC, HE88MSLEDC 1996
E88MSLEIM, E90JLEIE, E90TLEIE, TE90TLEIE, VE90MLEIE, VE90TLEIE 1991
E88MSLEIM 1991
E88MSLENB 1992
E88MSLENB, E90JLEND, E90TLEND, TE90TLEND, VE90MLEND, VE90TLEND 1992
E88MSLEOS, E90JLEOR, E90MLEOR, E90TLEOR 1995
E88MSLEOS 1995
E88MSLERD, E90JLERC, E90MLERC, E90TLERC, E90TXARC 1994
E88MSLERD 1994
E88MSLETE 1993
E88MSLETE, E90JLETS, E90TLETS, E90TXATS, TE90TLETS, VE90MLETS, VE90TLETS 1993
Information:
Fuel System
FUEL SYSTEM SCHEMATIC
1. Bleed valve. 2. Fuel injection pump. 3. Bleed manifold. 4. Fuel manifold. 5. Precombustion chamber. 6. Fuel transfer pump bypass valve. 7. Priming pump. 8. Bleed valve. 9. Fuel tank. 10. Primary fuel filter. 11. Fuel transfer pump. 12. Fuel filters.Fuel is drawn from the fuel tank through the primary fuel filter (10) by the transfer pump (11). This pump is mounted on the fuel filter housing and is driven by a shaft connected to the fuel injection pump camshaft.A bypass valve (6) at the inlet side of the fuel filter assures adequate pressure for the fuel system and allows excess fuel to be bypassed back to the fuel tank (9) through a return line.A fuel priming pump (7) is used to fill the filter case, pressurize the fuel and assure that the system is free of air prior to starting the engine. A system of check valves allows fuel to be pumped past the fuel transfer pump when the priming pump is in use. As the filter (12) and fuel injection pump (2) passages are being filled with fuel from the priming pump, bleed valve (8) on the filter housing can be opened to allow air to escape. The bleed valve (1) on the fuel manifold can be used to allow any entrained air to escape from the individual fuel pumps and eliminate the need for loosening fuel line connections at the individual fuel pumps.Individual fuel injection lines carry fuel from the pumps to each cylinder. One section of line connects between the fuel injection pump and an adapter on the inward portion of the camshaft housing. Another section of line on the inside of the camshaft housing connects between the adapter and the top of the precombustion chamber.The fuel pump camshaft is driven by gears located inside a cover at the rear of the engine. An adjustable drive gear at the rear of the engine vee, drives a speed sensing, variable timing unit which in turn is coupled to the fuel pump camshaft through a sliding spline. This variable timing unit automatically provides retarded timing for easier starting and smooth low rpm operation. It will also advance timing as engine rpm increases to provide optimum engine operating efficiency.Fuel Injection Pump
Fuel enters the fuel injection pump housing through passage (6) and enters the fuel injection pump body through the inlet port (2). The injection pump plungers (5) and the lifters (11) are lifted by the cam lobes (12) on the camshaft and always make a full stroke. The lifters are held against the cam lobes by the springs (3). Each pump measures the amount of fuel to be injected into its respective cylinder and forces it out the fuel injection nozzle.
FUEL INJECTION PUMP
1. Check valve. 2. Inlet port. 3. Spring. 4. Lubrication passage (fuel). 5. Pump plunger. 6. Fuel passage. 7. Bleed passage. 8. Fuel rack. 9. Lubrication passage (oil). 10. Gear segment. 11. Pump Lifter. 12. Camshaft lobe.The amount of fuel pumped each stroke is varied by turning the plunger in the barrel. The plunger is turned by the governor action through the fuel rack (8) which turns the gear segment (10) on the bottom of the pump plunger. Passage (4) provides fuel to lubricate the pump plunger and passage (7) allows air to be bled from the system through the valve on top of the fuel filter case.Fuel Injection Valve
Fuel, under high pressure from the injection pumps, is transferred through the injection lines to the injection valves. As high pressure fuel enters the nozzle assembly, the check valve within the nozzle opens and permits the fuel to enter the precombustion chamber. The injection valve provides the proper spray pattern.
FUEL INJECTION VALVE CROSS SECTION
1. Fuel line assembly. 2. Seal. 3. Body. 4. Nut. 5. Seal. 6. Nozzle assembly. 7. Glow plug. 8. Precombustion chamber.Speed Sensing, Variable Timing Unit
The variable timing unit, couples the fuel injection pump camshaft to the engine rear timing gears. The variable timing unit advances the timing as engine rpm increases.On earlier engines the timing advances from 11° BTC at low idle to 19° BTC at high idle. On later engines the timing advances from 8° BTC at low idle to 19° BTC at high idle.
LOW RPM POSITION
1. Power piston. 2. Power piston cavity. 3. Control valve spring. 4. Power piston return spring. 5. Oil inlet passage. 6. Drain port. 7. Control valve. 8. Flyweights. 9. Shaft assembly.During engine low rpm operation, the flyweight (8) force is not sufficient to overcome the force of control valve spring (3) and move control valve (7) to the closed position. Oil merely flows through the power piston cavity (2).As the engine rpm increases, flyweights (8) overcome the force of control valve spring (3) and move control valve (7) to the closed position, blocking the oil drain port (6). Pressurized oil, trapped in power piston cavity (2), overcomes the force of spring (4) and moves power piston (1) outward. This causes the fuel injection pump camshaft to index slightly ahead of the shaft portion (9) of the variable timing unit. Any outward movement of the power piston increases the force on the control valve spring. This tends to reopen the control valve, letting oil escape from the power piston cavity. As oil begins flowing from the cavity again, return spring (4) moves the power piston inward.
HIGH RPM POSITION
1. Power piston. 2. Power piston cavity. 3. Control valve spring. 4. Power piston return spring. 5. Oil inlet passage. 6. Drain port. 7. Control valve. 8. Flyweights. 9. Shaft assembly.At any given rpm, a balance is reached between the flyweight force and the control valve spring force. The resultant position of control valve (7) will tend to maintain proper pressure behind the power piston. The greater the rpm, the smaller the drain port opening, and the further outward the power piston is forced.As the power piston is moved outward, the angular relationship of the ends of the drive unit change. As the power piston moves
FUEL SYSTEM SCHEMATIC
1. Bleed valve. 2. Fuel injection pump. 3. Bleed manifold. 4. Fuel manifold. 5. Precombustion chamber. 6. Fuel transfer pump bypass valve. 7. Priming pump. 8. Bleed valve. 9. Fuel tank. 10. Primary fuel filter. 11. Fuel transfer pump. 12. Fuel filters.Fuel is drawn from the fuel tank through the primary fuel filter (10) by the transfer pump (11). This pump is mounted on the fuel filter housing and is driven by a shaft connected to the fuel injection pump camshaft.A bypass valve (6) at the inlet side of the fuel filter assures adequate pressure for the fuel system and allows excess fuel to be bypassed back to the fuel tank (9) through a return line.A fuel priming pump (7) is used to fill the filter case, pressurize the fuel and assure that the system is free of air prior to starting the engine. A system of check valves allows fuel to be pumped past the fuel transfer pump when the priming pump is in use. As the filter (12) and fuel injection pump (2) passages are being filled with fuel from the priming pump, bleed valve (8) on the filter housing can be opened to allow air to escape. The bleed valve (1) on the fuel manifold can be used to allow any entrained air to escape from the individual fuel pumps and eliminate the need for loosening fuel line connections at the individual fuel pumps.Individual fuel injection lines carry fuel from the pumps to each cylinder. One section of line connects between the fuel injection pump and an adapter on the inward portion of the camshaft housing. Another section of line on the inside of the camshaft housing connects between the adapter and the top of the precombustion chamber.The fuel pump camshaft is driven by gears located inside a cover at the rear of the engine. An adjustable drive gear at the rear of the engine vee, drives a speed sensing, variable timing unit which in turn is coupled to the fuel pump camshaft through a sliding spline. This variable timing unit automatically provides retarded timing for easier starting and smooth low rpm operation. It will also advance timing as engine rpm increases to provide optimum engine operating efficiency.Fuel Injection Pump
Fuel enters the fuel injection pump housing through passage (6) and enters the fuel injection pump body through the inlet port (2). The injection pump plungers (5) and the lifters (11) are lifted by the cam lobes (12) on the camshaft and always make a full stroke. The lifters are held against the cam lobes by the springs (3). Each pump measures the amount of fuel to be injected into its respective cylinder and forces it out the fuel injection nozzle.
FUEL INJECTION PUMP
1. Check valve. 2. Inlet port. 3. Spring. 4. Lubrication passage (fuel). 5. Pump plunger. 6. Fuel passage. 7. Bleed passage. 8. Fuel rack. 9. Lubrication passage (oil). 10. Gear segment. 11. Pump Lifter. 12. Camshaft lobe.The amount of fuel pumped each stroke is varied by turning the plunger in the barrel. The plunger is turned by the governor action through the fuel rack (8) which turns the gear segment (10) on the bottom of the pump plunger. Passage (4) provides fuel to lubricate the pump plunger and passage (7) allows air to be bled from the system through the valve on top of the fuel filter case.Fuel Injection Valve
Fuel, under high pressure from the injection pumps, is transferred through the injection lines to the injection valves. As high pressure fuel enters the nozzle assembly, the check valve within the nozzle opens and permits the fuel to enter the precombustion chamber. The injection valve provides the proper spray pattern.
FUEL INJECTION VALVE CROSS SECTION
1. Fuel line assembly. 2. Seal. 3. Body. 4. Nut. 5. Seal. 6. Nozzle assembly. 7. Glow plug. 8. Precombustion chamber.Speed Sensing, Variable Timing Unit
The variable timing unit, couples the fuel injection pump camshaft to the engine rear timing gears. The variable timing unit advances the timing as engine rpm increases.On earlier engines the timing advances from 11° BTC at low idle to 19° BTC at high idle. On later engines the timing advances from 8° BTC at low idle to 19° BTC at high idle.
LOW RPM POSITION
1. Power piston. 2. Power piston cavity. 3. Control valve spring. 4. Power piston return spring. 5. Oil inlet passage. 6. Drain port. 7. Control valve. 8. Flyweights. 9. Shaft assembly.During engine low rpm operation, the flyweight (8) force is not sufficient to overcome the force of control valve spring (3) and move control valve (7) to the closed position. Oil merely flows through the power piston cavity (2).As the engine rpm increases, flyweights (8) overcome the force of control valve spring (3) and move control valve (7) to the closed position, blocking the oil drain port (6). Pressurized oil, trapped in power piston cavity (2), overcomes the force of spring (4) and moves power piston (1) outward. This causes the fuel injection pump camshaft to index slightly ahead of the shaft portion (9) of the variable timing unit. Any outward movement of the power piston increases the force on the control valve spring. This tends to reopen the control valve, letting oil escape from the power piston cavity. As oil begins flowing from the cavity again, return spring (4) moves the power piston inward.
HIGH RPM POSITION
1. Power piston. 2. Power piston cavity. 3. Control valve spring. 4. Power piston return spring. 5. Oil inlet passage. 6. Drain port. 7. Control valve. 8. Flyweights. 9. Shaft assembly.At any given rpm, a balance is reached between the flyweight force and the control valve spring force. The resultant position of control valve (7) will tend to maintain proper pressure behind the power piston. The greater the rpm, the smaller the drain port opening, and the further outward the power piston is forced.As the power piston is moved outward, the angular relationship of the ends of the drive unit change. As the power piston moves
Parts nut EVINRUDE:
0315204
0315204 NUT, Stud powerhead
100193A, 100293R, 100990S, 115083D, 115393M, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 115983E, 125183C, 125283R, 135383M, 135443B, 135543E, 135643D, 150840S, 150940C, 175740S, 200640S, 50172S, 50202C, 50302R, 50442M, 50542B, 50902C, 55642
0314730
0314730 NUT, Pinion to driveshaft
100193A, 100293R, 100990S, 115083D, 115393M, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 115983E, 125183C, 125283R, 135383M, 135443B, 135543E, 135643D, 150840S, 150940C, 175740S, 200640S, 85093B, 85193A, 85293R, 85393M, 85493B, 85593E, 85693
0328740
0328740 NUT
BE115TLEDA, BE130TLECE, BE130TLEDM, BE130TLEUB, BE200CXECM, BE200CXEDR, BE200CXEUA, BE20SEECB, BE20SEEDA, BE20SEEUM, BE225CXECS, BE225CXEDE, BE225CXEUD, BE250CXECB, BE250CXEDA, BE250CXEUM, BE25ARECA, BE25AREDC, BE25AREUR, BE25EECE, BE25EEDM, BE25EEUB
0121731
0121731 NUT, Starter bracket
B25JREUR, BE115GLECM, BE115TLEDA, BE150ELECD, BE150ELEDB, BE150ELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE20SEECB, BE20SEEDA, BE20SEEUM, BE20SRECB, BE20SREDA, BE20SREUM, BE25BAECM, BE25BAEDR, BE25EECE, BE25EEDM, BE25EEUB, BE30BAECS, BE30BAEDE, BE30
0329267
0329267 NUT, Flywheel, rope start
BE115TLEDA, BE50DTLEDC, BE50DTLEUR, BE60ELEDR, BE60ELEUA, BE60TLECM, BE70ELECB, BE70ELEDA, BE70ELEUM, E100STLEIE, E100STLEND, E100STLERC, E100STLESB, E100STLETS, E100WTLEDR, E100WTLEIB, E100WTLENE, E100WTLEOC, E100WTLERS, E100WTLESM, E100WTLETD, E100
0327805
0327805 NUT, Switch
B25JREUR, BE130TLECE, BE130TLEDM, BE130TLEUB, BE20SRECB, BE20SREDA, BE20SREUM, BE250CXECB, BE250CXEDA, BE250CXEUM, BE25BAECM, BE25BAEDR, BE30BAECS, BE30BAEDE, BE30BAEUD, BE40EECR, BE40EEDS, BE40EEUC, BE50BEEDS, BE50ESECC, BE50RLEUC, E115JKLEOC, E115J
0331639
0331639 NUT
BE10FDLECM, BE10FDLEDR, BE10FDLEUA, BE15FAEDR, BE15FAEUA, BE15FDLECM, BE25ARECA, BE25AREDC, BE25AREUR, BE35ARECR, BE35AREDS, BE35AREEA, BE35AREUC, BE35ARSIB, BE35ARSSM, E10EBL4EEB, E10EL4SID, E10EL4SSE, E10FEXEO, E115JKLEOC, E115JKLERS, E15DLEOC, E15
0336866
0336866 NUT, Shaft, gate
BE115GLECM, BE115TLEDA, BE150ELECD, BE150ELEDB, BE150ELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE90SLECM, E100STLEIE, E100STLEND, E100STLERC, E100STLETS, E115JLEIE, E115JLEND, E115JLEOR, E115JLERC, E115JLETS, E150CXEIE, E150ELENC, E150ELEOM, E150ELE