977825 Volvo.Penta V-ribbed belt


977825 V-ribbed belt Volvo.Penta TWD1240VE; TAD1241VE; TAD1242VE V
977825 V-ribbed belt Volvo Penta
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Buy V-ribbed belt 977825 Volvo Penta genuine, new aftermarket parts with delivery

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$13.45

17-12-2024
0.3[0.14] pounds
US: PartsBroz
PartsBroz K080400 Micro-V Serpentine Drive Belt - Compatible with Gates Dayco Bando ACDelco Goodyear Continental - Replaces K080400HD, 8K400, 200739, 200781, 201500, 400K8, 5080400, 8PK1015, 8PK1025
PartsBroz K080400 Micro-V Serpentine Drive Belt - A high-quality interchange for parts K080400, K080400HD, 8K400, 200739, 200781, 201500, 400K8, 5080400, 8PK1015, 8PK1025, and 400K8MK. || K080400 also replaces parts 4080400, 3040663, 556727, 5142280, 2521148160, 977825, 8PK1020, 25-080400HD, 25-080400, 25-71018 and A-400K8. || The K080400 is a highly durable product that is compatible with Volvo. || High-Quality Materials: Our replacement parts are crafted from premium materials to ensure durability and long-lasting performance, providing you with reliable solutions for your home appliances. || Wide Compatibility: Designed to fit a variety of popular home appliance models, our replacement parts offer a convenient and versatile solution to keep your appliances in top working condition.
$29.37
 

25-08-2022
0.4[0.18] Pounds
-: -
Dayco 5080400 Serpentine Belt
This Dayco 5080400 Serpentine Belt replaces NAPA 25-080400, NAPA 25-080400HD, NAPA 25-71018, Cummins 3040663, Cummins 3288510, Freshstart 400K8, Goodyear 4080400, ACDelco 8K400, Volvo 977825, Gates || MAXIMIZE PERFORMANCE: Built for passenger cars and light-duty trucks, the extensive line of Dayco Poly Rib serpentine belts are engineered for high mileage, demanding drives found in todays vehicles. As the manufacturer of the first original equipment multi-ribbed serpentine belt, Daycos commitment to automotive product excellence and innovation is unwavering. The Dayco Poly Rib W Profile serpentine belt is the most innovative advancement in serpentine belt design in more than 35 years || OUTLAST THE REST: Developed through extensive laboratory and actual road mileage testing, this unique rib profile EPDM belt has been engineered to conform to high mileage, worn or misaligned drives and help eliminate noisy belt conditions. Constructed with aramid-reinforced EPDM compounds, the Dayco W Poly Rib serpentine belt delivers more than just OE-required quality. It delivers the solution to troublesome drive problems || RELY ON QUALITY AUTO PARTS: Dayco's essential engine parts and drive system solutions offer engine economy, efficiency, and exceptional performance while minimizing noise, vibration, and harshness. They strive to be first-to-market with built-to-last products such as high-quality engine timing belts, serpentine belts, drive belts, belt tensioners, and more || TRUST IN DAYCO: Dayco is a global leader in the automotive parts manufacturing industry and has built a reputation for high-quality Dayco belts since 1905. The supplier is guided by their primary business strategy to anticipate and satisfy the needs of their customers through reliable products and services
$47.29

30-09-2024
0.2888[0.13] Pounds
GB: ARKS Global UK
V-Ribbed Belt FEBI compatible with VOLVO Fh 12 16 Fl 93-06 977825
Febi bilstein A brand-new FEBI BILSTEIN part || 46531
Number on catalog scheme: 17
 

Compatible models:

Volvo Penta entire parts catalog list:

TWD1240VE; TAD1241VE; TAD1242VE; TAD1250VE; TAD1251VE; TAD1252VE

Information:


Illustration 1 g01172437
Lubrication system schematic (1) Passage to the rocker arms (2) Cylinder head gallery (3) Piston cooling jets (4) Passage to pushrod lifters (5) Main bearings (6) Camshaft bearings (7) Turbocharger oil supply line (8) Main oil gallery (9) Passage to front housing (10) Passage to oil pump idler gear bearing (11) Passage to camshaft idler gear bearing (12) Oil filter bypass valve (13) Passage (14) Oil cooler bypass valve (15) Engine oil filter (16) Engine oil cooler (17) Auxiliary engine oil filter (if equipped) (18) Engine oil pump (19) Oil pump bypass valve (20) Engine oil panEngine oil pump (18) is mounted to the bottom of the cylinder block inside the engine oil pan (20) . The engine oil pump (18) pulls oil from engine oil pan (20) . The engine oil pump pushes the oil through the passage to the engine oil cooler (16) . Oil then flows through engine oil filter (15) . The filtered oil then enters the turbocharger oil supply line (7) and main oil gallery (8) .The main oil gallery (8) distributes oil to main bearings (5) , piston cooling jets (3) , and camshaft bearings (6) . Oil from main oil gallery (8) exits the front of the block. The oil then enters a groove that is cast in front housing (9) .Oil enters the crankshaft through holes in the bearing surfaces (journals) for the main bearing (5) . Passages connect the bearing surface (journal) for the main bearing (5) with the bearing surface (journal) for the connecting rod.The passage in front housing (9) sends the oil flow in two directions. At the upper end of the passage, oil is directed back into the block and up to cylinder head gallery (2) through passage (1) to the rocker arm mechanism. A passage (10) sends oil to the oil pump idler gear bearing.Oil from the front main bearing enters a passage (11) to the camshaft idler gear bearing. Oil passages in the crankshaft send oil from all the main bearings (5) through the connecting rods to the connecting rod bearings.The passages send oil from the camshaft bearings (6) to an oil passage in the side covers. The oil then enters a hole in the shafts to pushrod lifters (4) . The oil lubricates the bearings of the lifter.Note: Engines that are equipped with an auxiliary oil filter (17) will receive oil at a port. The filtered oil will be returned to engine oil pan (20) .The oil circuit consists of a common pressure circuit. The pressure circuit typically operates at a pressure of 240 kPa (35 psi) to 480 kPa (70 psi). The pressure circuit provides engine oil that has been filtered to the lubricating system of the engine. Oil is drawn from the engine oil pan (20) . Oil is supplied through the engine oil cooler (16) and engine oil filter (15) to the engine.After the lubrication oil's work is done, the lubrication oil returns to the engine oil pan.The oil pump bypass valve (19) limits the pressure of the oil that is coming from the engine oil pump (18) . The engine oil pump (18) can pump more than enough oil into the system. When there is more than enough oil, the oil pressure increases. When the oil pressure increases, the oil pump bypass valve (19) will open. This allows the oil that is not needed to go back to the suction side of the engine oil pump (18) .The bypass valves (14) and (12) will open when the engine is cold (starting conditions). Opening the bypass valves achieves immediate lubrication of all components. Immediate lubrication is critical when cold oil with high viscosity causes a restriction to the oil flow through engine oil cooler (16) and engine oil filter (15) . The engine oil pump (18) sends the cold oil through the bypass valves around the engine oil cooler (16) and engine oil filter (15) to the turbocharger oil supply line (7) and the main oil gallery (8) in the cylinder block.When the oil gets warm, the pressure difference in the bypass valves decreases and the bypass valves close. After the bypass valves close, there is a normal flow of oil through the engine oil cooler and the engine oil filter.The bypass valves will also open when there is a restriction in the engine oil cooler (16) or engine oil filter (15) . This design allows the engine to be lubricated even though engine oil cooler (16) or engine oil filter (15) are restricted.The engine oil cooler bypass valve is also activated by pressure. If the oil pressure differential across the engine oil cooler reaches 125 30 kPa (18 4.5 psi), the valve will open. Opening the valve allows the oil flow to bypass the engine oil cooler (16) .The main oil flow now reaches the main engine oil filter (15) . When the oil pressure differential across the oil filter bypass valve (12) reaches 125 30 kPa (18 4.5 psi), the valve opens in order to allow the oil flow to go around the oil filter (15) . The oil flow continues in order to lubricate the engine components. When the oil is cold, an oil pressure difference in the bypass valve also causes the valve to open. This bypass valve then provides immediate lubrication to all the engine components when cold oil with high viscosity causes a restriction to the oil flow through the engine oil filter (15) . The bypass valve will also open when there is a restriction in the engine oil filter (15) . This design allows the engine to be lubricated even though engine oil filter (15) is restricted.Note: Refer to Specifications, "Engine Oil Filter Base". Filtered oil flows through the main oil gallery (8) in the cylinder block. Oil is supplied from the main oil gallery (8) to the following components:
Piston cooling jets
Valve mechanism
Camshaft bearings
Crankshaft main bearings
Turbocharger cartridgeAn oil cooling chamber is formed by the lip that is


Parts v Volvo Penta:

1542778
V-clamp
1542778 V-clamp
1372, 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), D9A2A; D9A2A D9-425; D9A2A D9-500, D9A2A; D9A2A MG; D9A2A D9A-MG, DH10A; DH10A 285; DH10A 360, TAD1030P, TAD1140VE; TAD1141VE; TAD1142VE, TAD115
20430373
V-ribbed belt
20430373 V-ribbed belt
D16C-A MG, D16C-A MH; D16C-B MH; D16C-C MH, D16C-D MH, TWD1240VE; TAD1241VE; TAD1242VE
3830067
V-ribbed belt
3830067 V-ribbed belt
TWD1240VE; TAD1241VE; TAD1242VE
3830066
 
3830066 V-ribbed belt
TWD1240VE; TAD1241VE; TAD1242VE
20397597
 
20397597 V-ribbed belt
TWD1240VE; TAD1241VE; TAD1242VE
3843951
 
3843951 V-ribbed belt
TWD1240VE; TAD1241VE; TAD1242VE
20708127
V-ribbed belt
20708127 V-ribbed belt
TWD1240VE; TAD1241VE; TAD1242VE
20430368
V-ribbed belt
20430368 V-ribbed belt
TWD1240VE; TAD1241VE; TAD1242VE
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