3852467 Volvo.Penta Stud, exhaust manifold to engine


3852467 Stud, exhaust manifold to engine Volvo.Penta 4.3GLMMDA; 4.3GLPMDA; 4.3GSPMDA, 4.3GLPHUB; 4.3GSPHUB; 4.3GSPHUS, 4.3GLPLKD; 4.3GLPLKE; 4.3GSPLKD, 4.3GLPNCA; 4.3GLPNCB; 4.3GLPNCS, 5.7GiPHUS, 5.7GLPLKA; 5.7GLPLKD; 5.7GLPLKE, 5.7GLPMDA; 5.7GIPMDA; 5.7GIPMDACE, 5.7GLPNCS; 5.7GIPNCACE; 5.7GIPNCSCE Stud
3852467 Stud, exhaust manifold to engine Volvo Penta
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$4.95
 

11-04-2024

BG: Poseidon Marine
Poseidon Marine Manifold Stud for Volvo Penta RO: 3852467 0909313 4.3 V6 >1193 5.0 5.7 GM >1993
Poseidon Marine 4.3 V6 GM262 after 1993 || 5.0 5.7 GM305,350 after 1993 || NOT FOR FORD TYPE ENGINES, NOT FOR ENGINES PRIOR 1993
$11.99
 

22-08-2017
1.00[0.45] pounds
VOLVO: VOLVO
Volvo Stud 3852467
$13.79
 

11-06-2021
0.05[0.00] Pounds
-: -
STUD | GLM Part Number: 22487; OMC Part Number: 3852467; Volvo Part Number: 3852467
GLM Part Number: 22487; OMC Part Number: 3852467; Volvo Part Number: 3852467
Number on catalog scheme: 6
 

Volvo Penta entire parts catalog list:

4.3GLMMDA; 4.3GLPMDA; 4.3GSPMDA
4.3GLPHUB; 4.3GSPHUB; 4.3GSPHUS; 4.3GIPHUSCE
4.3GLPLKD; 4.3GLPLKE; 4.3GSPLKD; 4.3GSPLKE; 4.3GIPLKDCE; 4.3GIPLKECE; 4.3GSJLKD
4.3GLPNCA; 4.3GLPNCB; 4.3GLPNCS; 4.3GSJNCC; 4.3GSJNCS; 4.3GSPNCA; 4.3GSPNCB; 4.3GSPNCM; 4.3GSPNCS; 4.3GIPNCACE; 4.3GIPNCBCE; 4.3GIPNCMCE; 4.
5.7GiPHUS
5.7GLPLKA; 5.7GLPLKD; 5.7GLPLKE; 5.7GLPLKR; 5.7GSPLKD; 5.7GSPLKE; 5.7GLIPLKDCE; 5.7GIPLKDCE; 5.7GIPLKECE; 5.7GSICPLKD; 5.7GSiPLKD; 5.7GSIPL
5.7GLPMDA; 5.7GIPMDA; 5.7GIPMDACE; 5.7GLIMDA; 5.7GIIMDA
5.7GLPNCS; 5.7GIPNCACE; 5.7GIPNCSCE; 5.7GIPNCMCE; 5.7GIPNCBCE; 5.7GIINCCCE; 5.8FSIINCS

Information:


Illustration 1 g01103269
(1) Cylinder head
(2) Water temperature regulator housing
(3) Expansion tank
(4) Bypass hose
(5) Cylinder block
(6) Oil cooler
(7) Water pump
(8) Radiator
(9) Shunt line Water pump (7) is located on the right side of the cylinder block. The water pump is driven by a belt that is powered by the crankshaft pulley. Coolant can enter the water pump in three places:
Inlet at the bottom of the water pump
Bypass hose (4) which is located on the top of the water pump
Shunt line which is located on the top of the water pumpCoolant from the bottom of the radiator is pulled into the bottom inlet of the pump by impeller rotation. The coolant exits the back of the pump directly into the oil cooler cavity of the block.All of the coolant passes through the core of the oil cooler and the coolant enters the internal water manifold of the cylinder block. The manifold disperses the coolant to water jackets around the cylinder walls.
Illustration 2 g01103307
(7) Water pump
(10) Bypass inlet
Illustration 3 g01103313
(1) Cylinder head
(2) Water temperature regulator housing
(4) Bypass hose
(11) Water temperature regulator From the cylinder block, the coolant flows into passages in the cylinder head. The passages send the flow around the unit injector sleeves and the inlet and the exhaust passages. The coolant now enters water temperature regulator housing (2) at the front right side of the cylinder head.Water temperature regulator (11) controls the direction of flow. When the coolant temperature is below the normal operating temperature, the water temperature regulator is closed. The coolant is directed through bypass hose (4) and into the top inlet of the water pump. When the coolant temperature reaches the normal operating temperature, water temperature regulator (11) opens. When the water temperature regulator is open, the bypass is closed. Most of the coolant goes through bypass inlet (10) to the radiator for cooling. The remainder flows through bypass hose (4) and into the water pump.Note: Some coolant systems may contain two water temperature regulators.The shunt line (9) extends from the top of the water pump to an expansion tank. The shunt line must be routed properly in order to avoid trapping any air. By providing a constant flow of coolant to the water pump, the shunt line keeps the water pump from cavitation.Note: Water temperature regulator (11) is an important part of the cooling system. The water temperature regulator divides coolant flow between the radiator and the bypass in order to maintain the normal operating temperature. If the water temperature regulator is not installed in the system, there is no mechanical control, and most of the coolant will travel the path of least resistance through the bypass. This will cause the engine to overheat in hot weather and the engine will not reach normal operating temperature in cold weather.Note: The air vent valve will allow the air to escape past the water temperature regulator from the cooling system while the radiator is being filled. During normal operation, the air vent valve will be closed in order to prevent coolant flow past the water temperature regulator.Coolant For Air Compressor (If Equipped)
Illustration 4 g01103317
(12) Coolant supply line
(13) Coolant return line If the engine is equipped with an air compressor, coolant for the air compressor is supplied from the water temperature regulator housing, through coolant supply line (12). The coolant is circulated through the air compressor and the coolant is returned to the cooling system through coolant return line (13) into the cylinder head.Coolant Conditioner (If Equipped)
Some conditions of operation can cause pitting. This pitting is caused by corrosion or by cavitation erosion. A corrosion inhibitor is a chemical that provides a reduction in pitting. The addition of a corrosion inhibitor can keep this type of damage to a minimum.The coolant conditioner element is a spin-on element that is similar to the fuel filter and to the oil filter elements. The coolant conditioner element attaches to the coolant conditioner base that is mounted on the front of the engine. Coolant flows from the water pump to the coolant conditioner base and back to the cylinder block. Coolant constantly flows through the coolant conditioner element when the valves are in the OPEN position.The element has a specific amount of inhibitor for acceptable cooling system protection. As the coolant flows through the element, the corrosion inhibitor goes into the solution. The corrosion inhibitor is a dry solution, so the inhibitor dissolves. The corrosion inhibitor then mixes to the correct concentration. Two basic types of elements are used for the cooling system. The two types of elements are the precharge element and the maintenance element. Each type of element has a specific use. The elements must be used correctly in order to get the necessary concentration for cooling system protection. The elements also contain a filter. The elements should remain in the system in order for the coolant to flow through the elements after the conditioner material is dissolved.The precharge element contains more than the normal amount of inhibitor. The precharge element is used when a system is first filled with new coolant. This element must add enough inhibitor in order to bring the complete cooling system up to the correct concentration.The maintenance elements have a normal amount of inhibitor. The maintenance elements are installed at the first change interval. A sufficient amount of inhibitor is provided by the maintenance elements in order to maintain the corrosion protection at an acceptable level. After the first change interval, only maintenance elements are installed. In order to provide the cooling system with protection, maintenance elements are installed at specific intervals.


Parts stud Volvo Penta:

3853202
 
3853202 Stud
3.0GLM-C; 3.0GLP-C, 3.0GLMMDA; 3.0GSPMDA, 3.0GLP-A; 3.0GLP-B; 3.0GLM-A, 3.0GLP-D, 3.0GLP-E, 3.0GLP-J; 3.0GLP-N, 3.0GSMBYMCE; 3.0GSPBYCCE, 3.0GSMHUB; 3.0GSPHUB, 3.0GSMLKD; 3.0GSPLKD, 3.0GSMNCA; 3.0GSMNCS; 3.0GSPNCA, 3.0GSMWTR; 3.0GSMWTS; 3.0GSPWTR, 3.
3853146
 
3853146 Stud
3.0GLM-C; 3.0GLP-C, 3.0GLMMDA; 3.0GSPMDA, 3.0GLP-A; 3.0GLP-B; 3.0GLM-A, 3.0GLP-D, 3.0GLP-E, 3.0GLP-J; 3.0GLP-N, 3.0GSMBYMCE; 3.0GSPBYCCE, 3.0GSMHUB; 3.0GSPHUB, 3.0GSMLKD; 3.0GSPLKD, 3.0GSMNCA; 3.0GSMNCS; 3.0GSPNCA, 3.0GSMWTR; 3.0GSMWTS; 3.0GSPWTR, 3.
3853373
Stud
3853373 Stud
3.0GLM-C; 3.0GLP-C, 3.0GLMMDA; 3.0GSPMDA, 3.0GLP-A; 3.0GLP-B; 3.0GLM-A, 3.0GLP-D, 3.0GLP-E, 3.0GLP-J; 3.0GLP-N, 3.0GSMBYMCE; 3.0GSPBYCCE, 3.0GSMHUB; 3.0GSPHUB, 3.0GSMLKD; 3.0GSPLKD, 3.0GSMNCA; 3.0GSMNCS; 3.0GSPNCA, 3.0GSMWTR; 3.0GSMWTS; 3.0GSPWTR, 3.
3853274
Stud, flywheel & coupler to crankshaft
3853274 Stud, flywheel & coupler to crankshaft
3.0GLMMDA; 3.0GSPMDA, 3.0GSMBYMCE; 3.0GSPBYCCE, 3.0GSMHUB; 3.0GSPHUB, 3.0GSMLKD; 3.0GSPLKD, 3.0GSMNCA; 3.0GSMNCS; 3.0GSPNCA, 3.0GSMWTR; 3.0GSMWTS; 3.0GSPWTR, 3.0GSPBYCCE; 3.0GSPEFS; 3.0GSMEFS, 4.3GL-A; 4.3GL-B; 4.3GL-C, 4.3GL-E; 4.3GL-EF, 4.3GL-G; 4.
3853205
 
3853205 Stud, rear seal retainer
4.3GLMMDA; 4.3GLPMDA; 4.3GSPMDA, 4.3GLPBYC; 4.3GSPBYC; 4.3GIPBYCCE, 4.3GLPEFS; 4.3GiPEFS, 4.3GLPHUB; 4.3GSPHUB; 4.3GSPHUS, 4.3GLPLKD; 4.3GLPLKE; 4.3GSPLKD, 4.3GLPNCA; 4.3GLPNCB; 4.3GLPNCS, 4.3GLPWTC; 4.3GLPWTR; 4.3GSPWTC, 5.0GL-F; 5.0GL-FF, 5.0GL-H;
3854313
 
3854313 Stud, camshaft sprocket
4.3GLMMDA; 4.3GLPMDA; 4.3GSPMDA, 4.3GLPHUB; 4.3GSPHUB; 4.3GSPHUS, 4.3GLPLKD; 4.3GLPLKE; 4.3GSPLKD, 4.3GLPNCA; 4.3GLPNCB; 4.3GLPNCS
3852093
Stud, oil cooler clamp to reservoir
3852093 Stud, oil cooler clamp to reservoir
4.3GLMMDA; 4.3GLPMDA; 4.3GSPMDA, 4.3GLPBYC; 4.3GSPBYC; 4.3GIPBYCCE, 4.3GLPEFS; 4.3GiPEFS, 4.3GLPHUB; 4.3GSPHUB; 4.3GSPHUS, 4.3GLPLKD; 4.3GLPLKE; 4.3GSPLKD, 4.3GLPNCA; 4.3GLPNCB; 4.3GLPNCS, 4.3GLPWTC; 4.3GLPWTR; 4.3GSPWTC, 5.0FIPHUBCE; 5.0FIPHUCCE; 5.
3856146
 
3856146 Stud, bearing cap
5.0GLPBYC; 5.0GiPBYCCE; 5.7GSPBYC, 5.0GLPEFS; 5.0GiPEFS; 5.7GSPEFS, 5.0GLPWTR; 5.0GiPWTR; 5.7GSIPWTR, 5.7GLPLKA; 5.7GLPLKD; 5.7GLPLKE, 5.7GLPNCS; 5.7GIPNCACE; 5.7GIPNCSCE
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