0309516 EVINRUDE RING, Friction


0309516 RING, Friction EVINRUDE 33002M, 33802M, 33902A, 40002A, 40052A, 40102B, 40202E, 40304D, 40404S, 40504C, 40604A, 40802A, 40852A, 40902R, 40952R, B25JREUR, BE20SRECB, BE20SREDA, BE20SREUM, BE25BAECM, BE25BAEDR, BE30BAECS, BE30BAEDE, BE30BAEEC, BE30BAEUD, BE30BASIA, BE30BASSR, RING
0309516 RING, Friction EVINRUDE
Rating:
88

Buy RING, Friction 0309516 EVINRUDE genuine, new aftermarket parts with delivery
Number on catalog scheme: 12
 

BRP EVINRUDE entire parts catalog list:

33002M, 33003M, 33052M, 33053M 1970
33802M, 33802R, 33803M, 33803R, 33852M, 33852R, 33853M, 33853R 1968
33902A, 33903A, 33952A, 33953A 1969
40002A, 40003A 1970
40052A, 40053A 1970
40102B, 40102G, 40103B, 40103G, 40152B, 40152G, 40153B, 40153G 1971
40202E, 40203E, 40252E, 40253E 1972
40304D, 40305D, 40354D, 40355D 1973
40404S, 40405S, 40454S, 40455S 1974
40504C, 40505C, 40554C, 40555C 1975
40604A, 40604R, 40605A, 40605R, 40654A, 40654R, 40655A, 40655R 1976
40802A, 40802D, 40802S, 40803A, 40803D, 40803S 1968
40852A, 40852C, 40852D, 40852S, 40853A, 40853C, 40853D, 40853S 1968
40902R, 40903R 1969
40952R, 40953R 1969
B25JREUR, BE25BAEUA, BE25BALEUA, E25REUM, E25RLEUM, HE25RAEUM, SE25RDEUR 1997
BE20SRECB, BE20SRLECB 1998
BE20SREDA, BE20SRLEDA 1996
BE20SREUM, BE20SRLEUM, E20CREUM, E20CRLEUM 1997
BE25BAECM, BE25BALECM, E25JRECA, E25RECB, E25RLECB, SE25RDECA 1998
BE25BAEDR, BE25BALEDR, BE25BREDC, BE25BRLEDC, HE25RAEDA, SE25RDEDC 1996
BE30BAECS, BE30BALECS 1998
BE30BAEDE, BE30BALEDE 1996
BE30BAEEC, BE30BAEEN 1999
BE30BAEUD, BE30BALEUD, E30REUD, E30RLEUD 1997
BE30BASIA 2001
BE30BASSR 2000
E20CRCCA, E20CRLCCA, E20ECCA, E20ELCCA 1988
E20CRCDC, E20CRLCDC, E20ECDC, E20ELCDC, E20TECDC 1986
E20CRCEM, E20CRLCEM, TE20CRCEM, TE20CRLCEM, TE20CRLESF 1989
E20CRCOS, E20CRLCOS, E20ECOS, E20ELCOS 1985
E20CRCUR, E20CRLCUR, E20ECUR, E20ELCUR 1987
E20CREDA, E20CRLEDA, HE20CREDA, HE20CRLEDA 1996
E20CREIE, E20CRLEIE, TE20CRLEIE 1991
E20CREND, E20CRLEND, TE20CREND, TE20CRLEND 1992
E20CREOR, E20CRLEOR 1995
E20CRERC, E20CRLERC 1994
E20CRESB, E20CRLESB, TE20CRESB, TE20CRLESB 1990
E20CRETS, E20CRLETS, TE20CRETS, TE20CRLETS 1993
E25ECCM, E25ELCCM, E25RCCA, E25RLCCA, E25TECCA, E25TELCCA 1988
E25ECDR, E25ELCDR, E25RCDC, E25RLCDC, E25TECDC, E25TELCDC 1986
E25ECOC, E25ELCOC, E25RCOS, E25RLCOS, E25TECOS, E25TELCOS 1985
E25ECUA, E25ELCUA, E25RCUR, E25RLCUR, E25TECUR, E25TELCUR 1987
E25JREDC 1996
E25JREOS 1995
E25RCEM, E25RLCEM 1989
E25REDA, E25RLEDA, HE25REDA, HE25RLEDA 1996
E25REIE, E25RLEIE, VE25REIE 1991
E25REND, E25RLEND 1992
E25REOR, E25RLEOR 1995
E25RERC, E25RLERC 1994
E25RESB, E25RLESB, VE25RESB 1990
E25RETS, E25RLETS 1993
E25RWCDC, E25RWLCDC 1986
E25RWCOS, E25RWLCOS 1985
E25RWCUR, E25RWLCUR 1987
E25RWEDC, E25RWLEDC, HE25FPO, HE25RSLO 1996
E25RWEIM, E25RWLEIM 1991
E25RWENB, E25RWLENB 1992
E25RWEOS, E25RWLEOS 1995
E25RWERD, E25RWLERD 1994
E25RWESA, E25RWLESA 1990
E25RWETE, E25RWLETE 1993
E25RWEUR, E25RWLEUR, HE25FPV, HE25RSLV, SE25RPLV, SE25RPV 1997
E25RWK, E25RWLK 1989
E25WREEN, E25WREES, E25WRLEEN, E25WRLEES 1999
E25WRLSIR, E25WRSIR 2001
E25WRLSSC, E25WRSSC 2000
E30ECCE, E30ELCCE, E30RCCE, E30RLCCE, E30TECCE, E30TELCCE 1988
E30ECDM, E30ELCDM, E30RCDM, E30RLCDM, E30TECDM, E30TELCDM 1986
E30ECOA, E30ELCOA, E30RCOA, E30RLCOA, E30TECOA, E30TELCOA 1985
E30ECUB, E30ELCUB, E30RCUB, E30RLCUB, E30TECUB, E30TELCUB 1987
E30RCED, E30RLCED 1989
E30REDE, E30RLEDE, HE30REDE, HE30RLEDE 1996
E30REIC, E30RLEIC 1991
E30RENR, E30RLENR 1992
E30REOB, E30RLEOB 1995
E30RERM, E30RLERM 1994
E30RESS, E30RLESS 1990
E30RETA, E30RLETA 1993
E35RCCE, E35RLCCE 1988
E35RCDM, E35RLCDM 1986
E35RCED, E35RLCED 1989
E35RCUB, E35RLCUB 1987
E35REIC, E35RLEIC 1991
E35RENR, E35RLENR 1992
E35RERM, E35RLERM 1994
E35RESS, E35RLESS 1990
E35RETA, E35RLETA 1993
E40RSLR, E40RSR, E40RWLCTR, E40RWLTR 1983
E40RWCDB, E40RWLCDB 1986
E40RWCOM, E40RWLCOM 1985
E40RWCRA, E40RWLCRA 1984
SE25RDEEM, SE25RDEEN 1999
SE25RDSIE 2001
SE25RDSSB 2000
SE25RPLP, SE25RPP 1998
SE35REDE, SE35RLEDE 1996
U25RWA, U25RWLA 1988

Information:


Illustration 1 g03876527
Air inlet and exhaust system
(1) Air-to-air aftercooler (ATAAC)
(2) Exhaust manifold
(3) Turbocharger
(4) Clean Emissions Module (CEM)
(5) EGR cooler
(6) EGR venturi
(7) EGR valve
(8) Exhaust valve solenoid
(9) Intake manifold
(10) Cylinder headThe engine has an electronic control system. The system controls the operation of the engine and aftertreatment. The Clean Emissions Module (CEM) consists of the following components: Diesel Particulate Filter (DPF), Selective Catalytic Reduction (SCR), and systems.The system consists of the following components:
Electronic Control Module (ECM)
Wiring
Sensors
ActuatorsInlet air is pulled through the air cleaner . The inlet air is then compressed and heated by the compressor wheel of turbocharger to about 150 °C (300 °F). The inlet air is then pushed through air-to-air aftercooler core and the inlet air is moved to the air inlet elbow. The temperature of the inlet air at air inlet elbow is about 43 °C (110 °F). Cooling of the inlet air increases the combustion efficiency. Increased combustion efficiency helps to lower fuel consumption. Also, increased combustion efficiency helps to increase horsepower output.Aftercooler core is a separate cooler core. The aftercooler core is installed in front of the core of the engine radiator. Air that is ambient temperature is moved across the aftercooler core by the engine fan. The aftercooler core cools the turbocharged inlet air.From aftercooler core , the air is forced into the cylinder head to fill the inlet ports. Air flow from the inlet port into the cylinder is controlled by the inlet valves.
Illustration 2 g01880505
Air inlet and exhaust system
(11) EGR cooler
(12) Exhaust manifold
(13) Aftercooler
(14) Exhaust outlet from turbocharger
(15) Turbine side of turbocharger
(16) Compressor side of turbocharger
(17) Air inlet
(18) Inlet valve
(19) Exhaust valveThere are two inlet valves and two exhaust valves for each cylinder. Inlet valves open when the piston moves down on the inlet stroke. When the inlet valves open, cooled compressed air from the inlet port is pulled into the cylinder. The inlet valves close and the piston will move up on the compression stroke. The air in the cylinder is compressed. When the piston is near the top of the compression stroke, fuel is injected into the cylinder. The fuel mixes with the air and combustion starts. During the power stroke, the combustion force pushes the piston downward. After the power stroke is complete, the piston moves upward. This upward movement is the exhaust stroke. During the exhaust stroke, the exhaust valves open, and the exhaust gases are pushed through the exhaust port into the exhaust manifold. After the piston completes the exhaust stroke, the exhaust valves close and the cycle will start again. The complete cycle consists of four stages:
Inlet stroke
Compression stroke
Power stroke
Exhaust strokeExhaust gases from the exhaust manifold enter the turbine side of turbocharger to turn the turbine wheel. The turbine wheel is connected to a shaft which drives the compressor wheel. Exhaust gases from the turbocharger pass through the exhaust outlet pipe, the muffler, and the exhaust stack.Exhaust Gas Recirculation (EGR) System
To reduce Nitrogen Oxides (NOx) coming from the engine, the Exhaust Gas Recirculation (EGR) system, sometimes referred to as NOx Reduction System (NRS), is used. Hot exhaust gas leaving cylinders 1, 2, and 3 are routed through the EGR system. In order for exhaust gas to be able to mix with pressurized air from the ATAAC, back pressure is needed in the exhaust system. This back pressure is created by the turbocharger and DPF. The hot exhaust gas is first cooled in the EGR cooler. The now cooled exhaust gas passes through the EGR venturi. The venturi takes a measurement of the flow of exhaust gas through the EGR system. After the gas flow is measured by the EGR venturi, the gas flows through the electronically controlled EGR valve. The electronic controlled EGR valve is hydraulically actuated. When the EGR valve is in the full OFF position, the only source of air is from the turbocharger compressor. As the valve starts to open the flow of cooled exhaust gas from the EGR cooler mixes with the air flow from the turbocharger. As the demand for more cooled exhaust gas increases, the valve opens wider. The increase in the flow of cooled exhaust gas from the EGR cooler. As the demand for more cooled exhaust gas increases, the demand for air flow from the engines turbocharger decreases.Turbocharger
Illustration 3 g01945375
Turbocharger
(20) Air inlet
(21) Compressor housing
(22) Compressor wheel
(23) Bearing
(24) Oil inlet port
(25) Bearing
(26) Turbine housing
(27) Small path
(28) Balance Valve chamber
(29) Large path
(30) Turbine wheel
(31) Exhaust outlet
(32) Oil outlet portThe turbocharger is installed on the exhaust manifold. Most of the exhaust gases flow through the turbocharger. A metered amount of exhaust gases flow through the EGR system. The compressor side of the turbocharger is connected to the aftercooler by a pipe.The exhaust gases go into turbine housing (26) through the exhaust inlet. The turbine housing of the turbocharger is of the asymmetric design. The asymmetric design consists of the turbine housing that has two different-sized paths for the exhaust to flow. Path (27) receives exhaust gas from cylinders one, two, and three. Path (29) receives exhaust gas from cylinders four, five, and six. The smaller path restricts the flow of the exhaust. This restriction helps force the exhaust gas through the EGR system to the intake manifold of the engine. The energy from the heat in the exhaust gases pushes the blades of turbine wheel (30). The turbine wheel is connected by a shaft to compressor wheel (22). The turbine housing also contains the exhaust balance valve and the actuator for the exhaust balance valve. The actuator for the exhaust balance valve receives boost pressure from the intake manifold. This boost pressure is first regulated by the solenoid for the exhaust balance valve. The exhaust balance valve solenoid will open allowing the boost pressure to act on the exhaust balance valve actuator if the valve needs to open. The actuator then opens the exhaust balance valve. The exhaust balance valve allows the flowing exhaust gas from the small path of the turbine housing to enter the large path. This action causes less exhaust


Parts ring EVINRUDE:

0314408
 
0314408 RING,Tru-arc
100882B, 25702H, 25802C, 25904R, 35602G, E20CRCDC, E20CRCOS, E25CNE, E25ECDR, E25ECIB, E25ECOC, E25ECRS, E25ECTD, E25RCSA, E28ELCDS, E28ELCDS, E30ECOA, E30ECRR, E35ECIG, E35ECND, E35ECRR, E35ECSM, E35ECTS
0305132
 
0305132 RING,Retaining,bearing
100193A, 100293R, 100882B, 115083D, 115983E, 125183C, 125283R, 40404S, 40504C, 40604A, 50172S, 50202C, 50302R, 50442M, 50542B, 50902C, 55642E, 55772D, 55872A, 55874S, 55972A, 60072B, 60172C, 65272S, 65372R, 65832B, 70442M, 70572B, 70673D, 70773S, 708
0303277
RING, Retaining
0303277 RING, Retaining
18002C, 18102S, 18202R, 18304A, 18802A, 18902B, 25002C, 25102S, 25202R, 25302A, 25402M, 25502B, 25602E, 25902B, 33802M, 33902A, 3802A, 4006E, 40802A, 40852A, 40872A, 40902R, 40952R, 40972R, 4106D, 4206S, 4306C, 4406R, 4506A, 4606M, 4902B, 5802B, 6002
0203470
RING, Retaining, pawl
0203470 RING, Retaining, pawl
100193A, 115083D, 115983E, 125183C, 18002C, 18102S, 18202R, 18304A, 18802A, 18902B, 2102A, 2202M, 2302B, 2402E, 25002C, 2502D, 25102S, 25202R, 25302A, 25402M, 25502B, 25602E, 25702H, 25802C, 25902B, 25904R, 2602S, 2702C, 2802R, 2902A, 35602G, 40202E,
0312610
0385807
RING SET, Std
0385807 RING SET, Std
25702H, 25802C, 25904R, 35602G, 65372R, 70442M, 70572B, 70673D, 70773S, 70873C, 70973R, 75542B, 75642D, E20CRCOS, E25CNE, E25ECIB, E25ECOC, E25ECRS, E25ECTD, E25RCSA, E25RSA, E25RSLS, E25RWCOS, E25RWCRD, E30ECOA, E30ECRR, E35ECIG, E35ECND, E35ECRR, E
0391170
RING SET,Std.
0391170 RING SET,Std.
E35AELCDE, E35AELCUD, E40AELCCS, E40ECDE, E40ECEC, E40ECOB, E40ECRM, E40ECUD, E40EERE, E40EESR, E40EETB, E40RSLR, E40RWCDB, E40RWCOM, E40RWCRA, E45RCCDS, E45RCCUC, E45RCE, E45RCESR, E48ESLCCC, E48ESLCCC, E48ESLCUS, E48ESLCUS, E48ESLERD, E48ESLERD, E4
0396377
RING SET, Standard
0396377 RING SET, Standard
B25JREUR, BE20SEECB, BE20SEEDA, BE20SEEUM, BE20SRECB, BE20SREDA, BE20SREUM, BE25BAECM, BE25BAEDR, BE25EECE, BE25EEDM, BE25EEUB, BE30BAECS, BE30BAEDE, BE30BAEEC, BE30BAEUD, BE30BASIA, BE30BASSR, BE30EECS, BE30EEDE, BE30EEUD, E20CRCCA, E20CRCDC, E20CRC
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