Product Description
Nta855 Diesel Engine Water Pump Idler Pulley 306 Ar45189
Product Name: | NTA855 Engine Water Pump idler pulley 3064919 305 0571 AR45189 |
Engine Model: | NTA855 |
Part/No.: | 3064919 305 0571 AR45189 |
MOQ: | 1PC |
357109 Pump, Water & Idler
1 182706 Screw, Hexagon Head Cap
357108 Pump, Water
2 S 911 B Plug, Pipe
3 S 16255 Ring, Retaining
4 196844 Spacer, Bearing
5 3 Plug, Pipe
7 3571861 Pulley, Water Pump
8 4026537 Seal, Rectangular Ring
9 357163 Body, Water Pump
10 305 0571 Shaft, Water Pump
11 3 0571 46 Bearing, Ball
3064919 Pulley, Idler
3 S 16255 Ring, Retaining
12 S 201 Nut, Heavy Hexagon
13 S 965 E Plug, Pipe
14 213082 Washer, Plain
15 215397 Pulley, Idler
16 305 0571 Spacer, Mounting
17 305 0571 Shaft, Idler
18 3 0571 46 Bearing, Ball
3571832 Mtg, Water Pump
19 3012468 Screw, Captive Washer Cap
20 3012469 Screw, Captive Washer Cap
21 3076522 Gasket, Water Pump
22 217638 Belt, V Ribbed
40 0571 2 | SEAL,O RING |
4078944 | SEAL,O RING |
211657 | CONNECTION,AIR CROSSOVER |
4096366 | TUBE,LUB OIL SUPPLY |
3679445 | SPACER,MOUNTING |
3925402 | SCREW,HEX FLANGE HEAD CAP |
3897201 | NOZZLE,INJECTOR |
C625719180 | HOSE,MOLDED |
ST1266 | DRIVER, CYLINDER LINER |
106221 | CLIP |
3924628 | TUBE,FUEL SUPPLY |
357137 | CLAMP,INJECTOR |
3628927 | HOSE,FLEXIBLE |
4571520 | QSK50 CM850 IND CR WIRING |
357132 | COUPLING,ELBOW HOSE |
3 0571 15 | PLUG,RETAINER |
3571361 | BRACKET,TURBOCHARGER |
AM12072 | HOSE,FLEXIBLE |
3006744 | SLEEVE,WEAR |
397 0571 | TANK,EXPANSION |
4955605 | TURBOCHARGER,HX40W |
3899753 | HOSE,FLEXIBLE |
3822765 | ASSY, INJ PLUNGER EXT |
3899970 | UNION,MALE |
3978056 | MODULE,ETR INTERFACE |
3800604 | KIT,FUEL SOLENOID |
3 0571 34 | TUBE,BREATHER |
3330942 | SEAL,O RING |
3013305 | TUBE,WATER TRANSFER |
ST75302 | SOCKET, SCREWDRIVER |
3916065 | TUBE,SEA WATER PUMP |
25711 | ADAPTER,EXHAUST OUTLET |
3954918 | CONNECTION,WATER OUTLET |
357147 | PULLEY,ACCESSORY DRIVE |
5566 | GEAR,FLYWHEEL RING |
3571099 | SEAL,WATER PUMP |
4 0571 33 | SPACER,MOUNTING |
3963452 | HOSE,FLEXIBLE |
138797 | SPRING,FUEL PUMP TORQUE |
3379664 | INJECTOR PARTS, FLOW (04 |
212301 | SUPPORT,ENGINE |
3678737 | SEAL,O RING |
3633573 | TUBE,CPR WATER OUTLET |
AM0601800SS | HOSE,FLEXIBLE |
3885823 | CLEANER,FUEL SYSTEM |
3905047 | TUBE,WATER TRANSFER |
3535215 | CLAMP,HOSE |
S149A | SCREW,HEXAGON HEAD CAP |
4571194 | VALVE,FUEL SHUTOFF |
405717 | TUBE,WATER TRANSFER |
4 0571 70 | PULLEY,ACCESSORY DRIVE |
3349385 | HOSE,FLEXIBLE |
3157116 | TUBE,WATER OUTLET |
4985465 | ELBOW,TUBE CONNECTOR |
3635396 | TUBE,WATER BYPASS |
4964144 | MANIFOLD,FUEL |
3558717 | SUPPORT,AIR COMPRESSOR |
3376636 | ASSY, BUSH INSTL/REMOVAL |
3634656 | ELBOW,MALE ADAPTER |
4938949 | BEARING,CRANKSHAFT THRUST |
3974293 | PAN,OIL |
3966458 | HEAD,CYLINDER |
3945920 | SET,MAIN BEARING (030) |
3636045 | CONNECTION,AIR TRANSFER |
4065785 | O-RING |
3925618 | HARNESS,WIRING |
3375137 | TOOL, AFC FP ANEROID ADJ |
3666008 | 1991 C SERIES SHOP |
3179736 | HOSE,FLEXIBLE |
3251545 | TUBE,FUEL DRAIN |
4939408 | CONNECTION,EXHAUST OUTLET |
3637761 | HOSE,FLEXIBLE |
3034288 | HARNESS,WIRING |
3824703 | TOOL, ACC DR BUSHING R/I |
3637762 | HOSE,FLEXIBLE |
3823964 | KIT, RING GROOVE CHECK |
357112 | CLEANER,AIR |
4981096 | CONNECTOR,QCK DISCONNECT |
4893494 | GASKET,COVER PLATE |
4951843 | BRACE,AIR COMPRESSOR |
185139 | ADAPTER,INJECTOR PTD |
C625716421 | CONNECTION,WATER OUTLET |
3375604 | SLEEVE, AFC BARREL PULLER |
3635078 | CONNECTION,WATER TRANSFER |
4571138 | ISF2.8 CM2220 WIRING DIA |
2896831 | TUBE,INJECTOR FUEL SUPPLY |
3929006 | INSERT,VALVE |
3958209 | PAN,OIL |
3965924 | SUPPORT,ALTERNATOR |
3017278 | HOSE,PLAIN |
4927649 | HOSE,FLEXIBLE |
4918342 | CABLE,ELECTRICAL |
3908402 | TUBE,WATER OUTLET |
3103077 | GASKET,EXH GAS RCN VALVE |
3971305 | HARNESS,WIRING |
3457162 | TUBE,AFTERCOOLER |
3632308 | HOSE,PLAIN |
357126 | HARNESS,WIRING |
3571292 | TUBE,LUB OIL SUPPLY |
3163571 | PIN,TIMING |
3685719 | SHAFT,IDLER |
3819789 | HOSE,FLEXIBLE |
395711 | GEAR,IDLER |
3635887 | BRACKET,TURBOCHARGER |
3947799 | VALVE,PRESSURE RELIEF |
457179 | BRACE,TUBE |
2896833 | TUBE,INJECTOR FUEL SUPPLY |
201705 | COVER,TOR CNV OIL COOLER |
4571585 | QSK19 CM850 PWR GEN WIRE |
3666206 | C8.3 NG T/SHOOTING&REPAIR |
3352546 | PAN,OIL |
175716 | XIHU (WEST LAKE) DIS.,VALVE SPRING |
153408 | COUPLING,PLAIN HOSE |
5255743 | TUBE,LUB OIL DRAIN |
315719 | SUPPORT,FRONT ENGINE |
3161582 | CLAMP,TUBE |
3003308 | LEVER,GOVERNOR |
3068573 | SUPPORT,FRONT ENGINE |
3201391 | ELBOW,MALE UNION |
3 0571 83 | ISOLATOR,VIBRATION |
3 0571 84 | ISOLATOR,VIBRATION |
3926969 | TUBE,AIR FUEL CONTROL |
405715 | NUT,LOCK |
3666256 | WARRANTY FAILURE CODEHEAV |
3571537 | SCREW,HEXAGON HEAD CAP |
4571375 | QSK23 T&R MANUAL |
3157195 | TUBE,WATER INLET |
3157139 | TUBE,WATER OUTLET |
3 0571 31 | ROD,PUSH |
3092970 | BELT,V RIBBED |
4927672 | BRACKET,WATER TUBE |
32571 | CONNECTION,AIR CROSSOVER |
3178289 | GASKET,AFTERCOOLER COVER |
3 0571 39 | RING,PISTON TURBO |
3892321 | SUPPORT,FAN |
3913326 | LEVER,NON-BREAKOVER |
496 0571 | ISB/ISD CM2150 SER.1-2 RU |
4960983 | SEV MAN ISL8.9 VOL 1/2 RU |
3571523 | COVER,GOVERNOR DRIVE |
3884342 | VTA28 GD PARTS |
3635398 | TUBE,WATER TRANSFER |
3163929 | CONNECTOR,ELC REPAIR |
S147 | CAPSCREW |
3931997 | CONNECTION,AIR CROSSOVER |
HangZhou CHINAMFG Industry & Trade Co., Ltd.
Add:Haili Industry Park ,HangZhou Economic Development Zone ,ZheJiang ,China
Post Code:442013
engine
After-sales Service: | 3064919 3050398 Ar45189 |
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Warranty: | 3064919 3050398 Ar45189 |
Car Model: | 3064919 3050398 Ar45189 |
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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Payment Method: |
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Initial Payment Full Payment |
Currency: | US$ |
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Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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What is the significance of proper alignment and tensioning in idler pulley systems?
Proper alignment and tensioning in idler pulley systems are of utmost significance for their optimal performance and longevity. Here’s a detailed explanation of the significance of proper alignment and tensioning:
1. Efficient Power Transmission:
Proper alignment and tensioning ensure efficient power transmission in idler pulley systems. When the belts or chains are correctly aligned with the pulleys, there is maximum contact and engagement, minimizing slippage and power loss. Optimal tensioning ensures that the belts or chains are appropriately tensioned, allowing for efficient transfer of power from the driving pulley to the driven pulley. Efficient power transmission improves the overall performance and productivity of the system.
2. Reduced Wear and Tear:
Proper alignment and tensioning help reduce wear and tear on belts, chains, pulleys, and other system components. Misalignment or inadequate tension can cause excessive stress, uneven loading, and premature wear. Misaligned belts or chains can rub against pulleys or adjacent components, leading to accelerated wear and potential damage. By ensuring proper alignment and tensioning, the system components experience minimal friction, resulting in reduced wear and extended service life.
3. Noise Reduction:
Proper alignment and tensioning contribute to noise reduction in idler pulley systems. Misaligned belts or chains can generate noise due to rubbing or vibration. Inadequate tensioning can cause belts or chains to slip or vibrate, resulting in noise generation. By aligning the belts or chains accurately and applying the correct tension, the system operates smoothly and quietly, enhancing the comfort and usability of the equipment.
4. System Stability and Reliability:
Proper alignment and tensioning promote system stability and reliability. When belts or chains are aligned correctly, they remain securely engaged with the pulleys, minimizing the risk of disengagement or derailing. Optimal tensioning ensures that the belts or chains maintain consistent tension, preventing slack or excessive tightness that could compromise system operation. A stable and reliable idler pulley system is crucial for maintaining continuous and trouble-free operation in various applications.
5. Extended Component Lifespan:
Proper alignment and tensioning help extend the lifespan of system components, including belts, chains, pulleys, and bearings. Misalignment and improper tensioning exert additional stress on these components, leading to accelerated wear and potential failure. By maintaining proper alignment and tension, the load is evenly distributed, reducing the strain on individual components and promoting their durability. Extended component lifespan translates to reduced maintenance costs and increased overall system productivity.
6. Safety:
Proper alignment and tensioning contribute to the safety of idler pulley systems. Misaligned belts or chains can pose safety hazards by coming into contact with surrounding equipment or personnel. Inadequate tensioning can result in sudden belt or chain disengagement, causing unexpected machine shutdowns or potential injuries. By ensuring proper alignment and tensioning, the risk of accidents or equipment damage is minimized, enhancing the safety of the working environment.
Overall, proper alignment and tensioning are vital for the efficient operation, reliability, longevity, noise reduction, and safety of idler pulley systems. Regular inspection, adjustment, and maintenance of alignment and tensioning parameters are essential to optimize system performance and maintain the integrity of the components involved.
Can idler pulleys withstand continuous use and high-speed rotation?
Idler pulleys are designed to withstand continuous use and high-speed rotation in various applications. Here’s a detailed explanation of the factors that contribute to the ability of idler pulleys to withstand continuous use and high-speed rotation:
1. Material Selection:
The choice of materials for idler pulleys is crucial in determining their ability to withstand continuous use and high-speed rotation. Idler pulleys are commonly made from durable materials such as steel, aluminum, or engineered plastics. These materials offer high strength, wear resistance, and dimensional stability. The selection of materials depends on factors such as the load capacity, operating conditions, and rotational speed requirements of the specific application.
2. Bearing Design:
The bearing design used in idler pulleys plays a vital role in their ability to handle continuous use and high-speed rotation. High-quality bearings with appropriate load ratings and speed capabilities are selected to support the rotational motion of the pulley. The bearing design ensures smooth operation, minimizes friction, and provides reliable support for the pulley shaft under continuous and high-speed conditions.
3. Heat Dissipation:
During high-speed rotation, idler pulleys can generate heat due to friction. Adequate heat dissipation mechanisms are incorporated into the design to prevent excessive heat buildup. This can include features such as cooling fins, ventilation holes, or the use of heat-resistant materials. Effective heat dissipation helps maintain the integrity of the idler pulleys and prevents overheating that could lead to premature wear or failure.
4. Load Capacity:
Idler pulleys are designed to handle specific load capacities, which include both radial and axial loads. The load capacity of an idler pulley is determined by factors such as the size, material, and bearing selection. Manufacturers provide load capacity guidelines to ensure that the idler pulleys can withstand continuous use and high-speed rotation without excessive stress or deformation.
5. Precision Manufacturing:
Idler pulleys are manufactured with precision to ensure proper balance, concentricity, and dimensional accuracy. The precise manufacturing process helps minimize vibration, wobbling, and noise during high-speed rotation. It also enhances the overall stability and performance of the idler pulley under continuous use.
6. Quality Control:
Idler pulleys undergo rigorous quality control measures during the manufacturing process. These measures include inspections, testing, and adherence to industry standards to ensure that the pulleys meet the required specifications. Quality control measures help ensure the reliability, durability, and performance of idler pulleys during continuous use and high-speed rotation.
Overall, idler pulleys are designed and engineered to withstand continuous use and high-speed rotation in various applications. Through careful material selection, bearing design, heat dissipation, load capacity considerations, precision manufacturing, and quality control measures, idler pulleys can reliably perform their intended functions even under demanding operating conditions.
Can you explain the primary functions and components of an idler pulley?
An idler pulley serves important functions in mechanical systems and consists of several key components. Let’s explore the primary functions and components of an idler pulley:
1. Primary Functions:
– Belt Guidance: The main function of an idler pulley is to guide the belt along a desired path, changing its direction as necessary. This ensures efficient power transmission and proper operation of the system.
– Tension Maintenance: Idler pulleys help maintain tension in the belt by taking up slack and preventing belt sagging or slippage. Proper tension is essential for optimal power transfer and system performance.
2. Components:
– Pulley Wheel: The pulley wheel is the circular component with a groove or V-shape that accepts the belt. It rotates on a fixed axle or bearing and provides a contact point for the belt to ride on.
– Axle or Bearing: The axle or bearing is the component that allows the pulley wheel to rotate smoothly. It provides support and reduces friction, ensuring efficient movement of the belt.
– Mounting Bracket: The mounting bracket is used to secure the idler pulley in its designated position within the system. It may be attached to a stationary structure or integrated into a movable mechanism.
– Tensioning Mechanism (Optional): In some cases, idler pulleys may incorporate a tensioning mechanism. This can include a spring-loaded arm or an adjustable bracket that allows for easy adjustment of belt tension.
– Housing or Guard (Optional): Depending on the application, an idler pulley may be enclosed within a housing or guarded to protect it from external elements and to prevent accidental contact with moving parts.
It’s important to select an idler pulley that is compatible with the specific belt type, system requirements, and load conditions. Proper installation and periodic maintenance, such as lubrication of bearings and inspection for wear, are essential to ensure smooth operation and extend the lifespan of the idler pulley.
editor by CX
2023-12-07