0346931 EVINRUDE *CLAMP, 14mm


0346931 *CLAMP, 14mm EVINRUDE E100FPLSOC, E100FPLSRS, E115FPLSDS, E115FPLSNF, E115FPLSOD, E115FPLSRE, E115FPLSTB, E115FPXSDS, E115FPXSOD, E115FPXSRE, E115FSLSDS, E135FCXSDE, E135FCXSNF, E135FCXSOB, E135FCXSRM, E135FCXSTA, E135FPLSDE, E135FPLSOB, E135FPLSRM, E135FPLSTA, E135FPXSDE CLAMP
0346931 *CLAMP, 14mm EVINRUDE
Rating:
8

Buy *CLAMP, 14mm 0346931 EVINRUDE genuine, new aftermarket parts with delivery
Number on catalog scheme: 52
 

BRP EVINRUDE entire parts catalog list:

E100FPLSOC, E100FSLSOC 2004,2005
E100FPLSRS, E100FSLSRS 2004
E115FPLSDS 2006
E115FPLSNF, E115FPXSNF 2002
E115FPLSOD, E115FSLSOD 2004,2005
E115FPLSRE, E115FSLSRE 2004
E115FPLSTB, E115FPXSTB, E115FSLSTB 2003
E115FPXSDS 2006
E115FPXSOD 2004,2005
E115FPXSRE 2004
E115FSLSDS 2006
E135FCXSDE 2006
E135FCXSNF, E135FPLSNF, E135FPXSNF 2002
E135FCXSOB 2004,2005
E135FCXSRM 2004
E135FCXSTA 2003
E135FPLSDE 2006
E135FPLSOB, E135FSLSOB 2004,2005
E135FPLSRM, E135FSLSRM 2004
E135FPLSTA, E135FPXSTA 2003
E135FPXSDE 2006
E135FPXSOB 2004,2005
E135FPXSRM 2004
E135FSLSDE 2006
E135FSLSTA 2003
E150FCXSDR 2006
E150FCXSNF, E150FPLSNF, E150FPXSNF 2002
E150FCXSOC 2004,2005
E150FCXSRS 2004
E150FCXSTD 2003
E150FHLSDR 2006
E150FHLSOC 2004,2005
E150FHLSRS 2004
E150FPLSDR 2006
E150FPLSOC, E150FSLSOC 2004,2005
E150FPLSRS, E150FSLSRS 2004
E150FPLSTD, E150FPXSTD, E150FSLSTD 2003
E150FPXSDR 2006
E150FPXSOC 2004,2005
E150FPXSRS 2004
E150FSLSDR 2006
E175FCXSDS 2006
E175FCXSNF, E175FPLSNF, E175FPXSNF 2002
E175FCXSOD 2004,2005
E175FCXSRE 2004
E175FCXSTB 2003
E175FPLSDS 2006
E175FPLSOD, E175FSLSOE 2004,2005
E175FPLSRE, E175FSLSRB 2004
E175FPLSTB, E175FPXSTB, E175FSLSTM 2003
E175FPLSTF 2003
E175FPXSDS 2006
E175FPXSOD 2004,2005
E175FPXSRE 2004
E175FSLSDD 2006
E175MFXSOS 2005
E175MFXSOS 2004
E200FCXSNF 2002
E200FCXSOE 2004,2005
E200FCXSRB 2004
E200FCXSTM, E200FHLSTS 2003
E200FHLSOR 2004,2005
E200FHLSRC 2004
E200FPLSNF, E200FPXSNF 2002
E200FPLSOE, E200FPXSOE, E200FSLSOE 2004,2005
E200FPLSRB, E200FPXSRB, E200FSLSRB 2004
E200FPLSTM, E200FPXSTM, E200FSLSTM 2003
E225FCXSNF, E225FCZSNF, E225FHLSNF, E225FPLSNF, E225FPXSNF, E225FPZSNF 2002
E225FCXSOE, E225FCZSOE 2004,2005
E225FCXSRB, E225FCZSRB 2004
E225FCXSTM, E225FCZSTM, E225FPLSTM, E225FPXSTM, E225FPZSTM 2003
E225FHLSOB, E225FHXSOC 2004,2005
E225FHLSRM, E225FHXSRS 2004
E225FHLSTA 2003
E225FPLSOE, E225FPXSOE, E225FPZSOE 2004,2005
E225FPLSRB, E225FPXSRB, E225FPZSRB 2004
E250FCXSNF, E250FCZSNF, E250FPZSNF 2002
E250FCXSOB, E250FCZSOB 2004,2005
E250FCXSRM, E250FCZSRM 2004
E250FCXSTA, E250FCZSTA, E250FPLSTR, E250FPXSTA, E250FPZSTA 2003
E250FPLSOM, E250FPXSOB, E250FPZSOB 2004,2005
E250FPLSRA, E250FPXSRM, E250FPZSRM 2004
E250FPXSNF 2002
E75FPLSNF 2002
E75FPLSTA 2003
E90FPLSNF 2002
E90FPLSTB, E90FSLSTB 2003

Information:


Illustration 1 g06412405
Air inlet and exhaust system
(1) Aftercooler core
(2) Air filter
(3) Clean Emissions Module (CEM)
(4) Back pressure valve
(5) Turbocharger
(6) Wastegate actuator
(7) Exhaust gas valve (NRS)
(8) Exhaust cooler (NRS)
(9) Wastegate regulatorThe components of the air inlet and exhaust system control the quality of air and the amount of air that is available for combustion. The air inlet and exhaust system consists of the following components:
Air cleaner
Exhaust cooler (NRS)
Exhaust gas valve (NRS)
Turbocharger
Aftercooler
Inlet manifold
Cylinder head, injectors, and glow plugs
Valves and valve system components
Piston and cylinder
Exhaust manifold
Clean Emissions Module (CEM)Air is drawn in through the air cleaner into the air inlet of the turbocharger by the turbocharger compressor wheel. The air is compressed to a pressure of about 150 kPa (22 psi) and heated to about 120° C (248° F) before the air is forced to the aftercooler. As the air flows through the aftercooler the temperature of the compressed air lowers to about 55° C (131° F). Cooling of the inlet air assists the combustion efficiency of the engine. Increased combustion efficiency helps achieve the following benefits:
Lower fuel consumption
Increased power output
Reduced NOx emission
Reduced particulate emissionFrom the aftercooler, the air flows to the inlet manifold. The air and exhaust gases are then mixed in the inlet manifold. Air flow from the inlet manifold to the cylinders is controlled by inlet valves. There are two inlet valves and two exhaust valves for each cylinder. The inlet valves open when the piston moves down on the intake stroke. When the inlet valves open, cooled compressed air from the inlet port is forced into the cylinder. The complete cycle consists of four strokes:
Inlet
Compression
Power
ExhaustOn the compression stroke, the piston moves back up the cylinder and the inlet valves close. The cool compressed air is then compressed further. This additional compression generates more heat.Note: If the cold starting system is operating, the glow plugs will also heat the air in the cylinder.Just before the piston reaches the top center (TC) position, the ECM operates the electronic unit injector. Fuel is injected into the cylinder. The air/fuel mixture ignites. The ignition of the gases initiates the power stroke. Both the inlet and the exhaust valves are closed and the expanding gases force the piston downward toward the bottom center (BC) position.From the BC position, the piston moves upward. The piston moving upwards initiates the exhaust stroke. The exhaust valves open. The exhaust gases are forced through the open exhaust valves into the exhaust manifold.The NOx Reduction System (NRS) operates with the transfer of the hot exhaust gas from the exhaust manifold to the exhaust gas valve (NRS), and exhaust cooler (NRS). The hot exhaust gas is cooled in the exhaust cooler (NRS). The exhaust gas valve (NRS) regulates the amount of exhaust gas that flows into the exhaust gas cooler (NRS).The reed valve that is located between the exhaust gas cooler (NRS) and the inlet manifold has one main function. The one main function is to prevent the reverse flow of charge air from the inlet side of the engine to the exhaust side of the engine.As the electronically controlled valve starts to open the flow of cooled exhaust gas from the exhaust cooler mixes with the air flow from the charge air aftercooler. The mixing of the cooled exhaust gas and the air flow from the charge air aftercooler reduces the oxygen content of the gas mixture. This results in a lower combustion temperature, so decreases the production of NOx.As the demand for more cooled exhaust gas increases the electronically controlled valve opens further. The further opening of the valve increases the flow of cooled exhaust gas from the exhaust cooler. As the demand for cooled exhaust gas decreases, the electronically controlled valve closes. This decreases the flow of cooled exhaust gas from the exhaust cooler.Exhaust gases from the exhaust manifold enter the inlet of the turbocharger to turn the turbocharger turbine wheel. The turbine wheel is connected to a shaft that rotates. The exhaust gases pass from the turbocharger through the following components: exhaust outlet, back pressure valve, Clean Emissions Module, and exhaust pipe.Turbocharger
Illustration 2 g00302786
Typical example of a cross section of a turbocharger
(1) Air intake
(2) Compressor housing
(3) Compressor wheel
(4) Bearing
(5) Oil inlet port
(6) Bearing
(7) Turbine housing
(8) Turbine wheel
(9) Exhaust outlet
(10) Oil outlet port
(11) Exhaust inletThe turbocharger is mounted on the outlet of the exhaust manifold. The exhaust gas from the exhaust manifold enters the exhaust inlet (11) and passes through the turbine housing (7) of the turbocharger. Energy from the exhaust gas causes the turbine wheel (8) to rotate. The turbine wheel is connected by a shaft to the compressor wheel (3).As the turbine wheel rotates, the compressor wheel is rotated. The rotation of the compressor wheel causes the intake air to be pressurized through the compressor housing (2) of the turbocharger.
Illustration 3 g03706081
Typical example
(12) Wastegate actuator
(13) Actuating lever
(14) Line (boost pressure)
Illustration 4 g02151895
Typical example
(15) Wastegate regulatorWhen the load on the engine increases, more fuel is injected into the cylinders. The combustion of this additional fuel produces more exhaust gases. The additional exhaust gases cause the turbine and the compressor wheels of the turbocharger to turn faster. As the compressor wheel turns faster, air is compressed to a higher pressure and more air is forced into the cylinders. The increased flow of air into the cylinders allows the fuel to be burnt with greater efficiency. This produces more power.A wastegate is installed on the turbine housing of the turbocharger. The wastegate is a valve that allows exhaust gas to bypass the turbine wheel of the turbocharger. The operation of the wastegate depends on the pressurized air (boost pressure) from the turbocharger compressor. The boost pressure acts on a diaphragm that is spring loaded in the wastegate actuator which varies the amount of exhaust gas that flows into the turbine.The wastegate regulator (15) is controlled by the engine Electronic Control Module (ECM). The ECM uses inputs from several engine sensors to determine the optimum boost pressure. This will achieve the best exhaust emissions and fuel consumption at any given engine


Parts clamp EVINRUDE:

0310947
 
0310947 CLAMP,Cable to head
100882B, 115083D, 18102S, 18202R, 25102S, 25202R, 60072B, 60172C, 65832B, 85093B, 85852A, 85892A, E100FPLSOC, E100FPLSRS, E115FPLSDS, E115FPLSNF, E115FPLSOD, E115FPLSRE, E115FPLSTB, E115FPXSDS, E115FPXSOD, E115FPXSRE, E115FSLSDS, E135FCXSDE, E135FCXS
0320107
CLAMP STRAP, Hose
0320107 CLAMP STRAP, Hose
100990S, 10424G, 10524C, 10624G, 10724A, 10824M, 10924B, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 135443B, 135543E, 135643D, 150840S, 150940C, 15404G, 15504C, 15604A, 175740S, 200640S, 2402E, 2502D, 25402M, 25502B, 25602E, 25702H, 25802C,
0511411
 
0511411 CLAMP
100990S, 115790S, 115890C, 150840S, 150940C, 175740S, 200640S, E100MLCSC, E100WTLEUA, E115JLEUM, E115MLCIH, E115MLCSA, E115TSLECM, E115TSLEUA, E140MLCIH, E140MLCSA, E150TRLCIA, E150TRLCSF, E175TRLCIM, E175TRLCSA, E200FCSSSC, E200FCXSIF, E200FCXSNF, E
0336136
 
0336136 CLAMP, Grommet, exhaust
BE115ELEDR, BE115ELEUA, BE115GLECM, BE150ELECD, BE150ELEDB, BE150ELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE25ARECA, BE25AREDC, BE25AREUR, BE35ARECR, BE35AREDS, BE35AREEA, BE35AREUC, BE35ARSIB, BE35ARSSM, BE90ELEDR, BE90ELEUA, BE90SLECM, E100FPLSOC
0349729
 
0349729 CLAMP, Exhaust relief - 41.0mm
DE150CXAAA, DE150CXAAC, DE150CXINS, DE150PXAAA, DE150PXAAC, DE150PXINS, DE200CXAAA, DE200CXAAC, DE200HXAAA, DE200HXAAC, DE200HXAAD, DE200PXAAA, DE200PXAAC, DE200XCAAA, DE200XCAAC, DE200XCAAD, DE225CXAAA, DE225CXAAC, DE225CXAAD, DE225CXINS, DE225PXAAA
0348839
*CLAMP, 17mm
0348839 *CLAMP, 17mm
B10EL4AAA, B10EL4AAB, B10EL4INS, B10PL4AAA, B10PL4AAB, B10PL4INS, B10PX4INS, B10R4AAA, B10R4AAB, B10R4INS, B10RL4INS, B10TEL4AAA, B10TEL4INS, B10TPL4AAA, B10TPL4AAB, B10TPL4INS, B10TPX4INS, B15PL4AAA, B15PL4INS, B15R4AAA, B15R4AAB, B15R4INS, B15RL4IN
0346151
CLAMP 21.0mm
0346151 CLAMP 21.0mm
DE200HXAAA, DE200HXAAC, DE200HXAAD, DE200XCAAA, DE200XCAAC, DE200XCAAD, DE225CXAAA, DE225CXAAC, DE225CXAAD, DE225CXINS, DE225PXAAA, DE225PXAAC, DE225PXAAD, DE225PXINS, DE250CXAAA, DE250CXAAC, DE250CXAAD, DE250CXISF, DE250PXAAA, DE250PXAAC, DE250PXAAD
0346152
 
0346152 CLAMP 25.6mm
DE150CXINS, DE150PXINS, DE200HXAAA, DE200HXAAC, DE200HXAAD, DE200XCAAA, DE200XCAAC, DE200XCAAD, DE225CXAAA, DE225CXAAC, DE225CXAAD, DE225CXINS, DE225PXAAA, DE225PXAAC, DE225PXAAD, DE225PXINS, DE250CXAAA, DE250CXAAC, DE250CXAAD, DE250CXISF, DE250PXAAA
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