Product Description
Cummins Genuine Engine Part Pulley, Idler 5372097/3017670 for CHINAMFG GTA38/K38QSK38 Engine with Competitive Price
CHINAMFG engine part:
More CHINAMFG engine parts in sock:Â
 PNs |  Parts Description_English | |||||||||||||||
C2830346 | CONNECTION,WATER INLET | |||||||||||||||
C2830405 | BREATHER,CRANKCASE | |||||||||||||||
C2830409 | SEAL,O RING | |||||||||||||||
C283571 | SCREW,HEX FLANGE HEAD CA | |||||||||||||||
C283571 | SCREW,HEX FLANGE HEAD CA | |||||||||||||||
C283 0571 | SEAL,O RING | |||||||||||||||
C2831066 | COLLAR,SHAFT | |||||||||||||||
C2831103 | SCREW,ROUND HEAD CAP | |||||||||||||||
C2831341 | PAN,OIL | |||||||||||||||
C2831342 | PAN,OIL | |||||||||||||||
C2831370 | HOUSING,FLYWHEEL | |||||||||||||||
C2834174 | TURBOCHARGER | |||||||||||||||
C2834176 | TURBOCHARGER | |||||||||||||||
C2834302 | TURBOCHARGER | |||||||||||||||
C2834338 | TURBOCHARGER | |||||||||||||||
C2834535 | TURBOCHARGER | |||||||||||||||
C2834797 | TURBOCHARGER | |||||||||||||||
C2834799 | TURBOCHARGER | |||||||||||||||
C2834823 | TURBOCHARGER | |||||||||||||||
C2835419 | TURBOCHARGER | |||||||||||||||
C2835420 | TURBOCHARGER | |||||||||||||||
C2836276 | TURBOCHARGER | |||||||||||||||
C2836441 | TURBOCHARGER | |||||||||||||||
C2836739 | TURBOCHARGER | |||||||||||||||
C2837154 | TURBOCHARGER | |||||||||||||||
C2837412 | TURBOCHARGER | |||||||||||||||
C2838287 | TURBOCHARGER | |||||||||||||||
C2839128 | TURBOCHARGER | |||||||||||||||
C2839315 | TURBOCHARGER | |||||||||||||||
C2839317 | TURBOCHARGER | |||||||||||||||
C2839319 | TURBOCHARGER | |||||||||||||||
C2839354 | TURBOCHARGER | |||||||||||||||
C2839387 | TURBOCHARGER | |||||||||||||||
C2839487 | TURBOCHARGER | |||||||||||||||
C2839489 | TURBOCHARGER | |||||||||||||||
C2839878 | TURBOCHARGER | |||||||||||||||
C2840195 | TURBOCHARGER | |||||||||||||||
C2840947 | TURBOCHARGER | |||||||||||||||
C2841270 | TURBOCHARGER | |||||||||||||||
C2841384 | TURBOCHARGER | |||||||||||||||
C2841698 | TURBOCHARGER | |||||||||||||||
C2842807 | TURBOCHARGER | |||||||||||||||
C2842849 | TURBOCHARGER | |||||||||||||||
C2864829 | SEAL,GEAR HOUSING | |||||||||||||||
C2864882 | HOUSING,GEAR | |||||||||||||||
C2864884 | SHAFT,IDLER | |||||||||||||||
C2864886 | GASKET,COVER PLATE | |||||||||||||||
C2864887 | PLATE,COVER | |||||||||||||||
C2864899 | SCREW,CONNECTING ROD CAP | |||||||||||||||
C2866616 | BOSS | |||||||||||||||
C2869891 | GASKET,VALVE COVER | |||||||||||||||
C2869892 | GEAR,IDLER | |||||||||||||||
C2869962 | NOZZLE,PISTON COOLING | |||||||||||||||
C2870121 | SEAL,FRONT COVER | |||||||||||||||
C2871979 | SENSOR,NITROGEN OXIHU (WEST LAKE) DIS. | |||||||||||||||
C2872277 | SENSOR,POSITION | |||||||||||||||
C2872279 | SENSOR,POSITION | |||||||||||||||
C2872792 | SENSOR,TEMPERATURE | |||||||||||||||
C2873953 | BRACKET,LIFTING | |||||||||||||||
C2873961 | SEAL,O RING | |||||||||||||||
C2873968 | HOSE,ELBOW | |||||||||||||||
C2873969 | PULLEY,FAN | |||||||||||||||
C2873971 | HUB,FAN | |||||||||||||||
C2873972 | SUPPORT,BELT TENSIONER | |||||||||||||||
C2873974 | BELT,V RIBBED | |||||||||||||||
C2873975 | SUPPORT,ALTERNATOR | |||||||||||||||
C2873982 | GASKET,EXHAUST MANIFOLD | |||||||||||||||
C2873983 | HOSE,FLEXIBLE | |||||||||||||||
C2873984 | CONNECTION,TUR OIL DRAIN | |||||||||||||||
C2873989 | SCREW,FRACTURE RESISTANT | |||||||||||||||
C2874016 | HEAD,FUEL FILTER | |||||||||||||||
C2874571 | TENSIONER,BELT | |||||||||||||||
C2874571 | BELT,V RIBBED | |||||||||||||||
C2874033 | BRACE,TUBE | |||||||||||||||
C2874037 | TUBE,WATER BYPASS | |||||||||||||||
C2874042 | PUMP,WATER | |||||||||||||||
C2874044 | CARRIER,SEAL | |||||||||||||||
C2874047 | COUPLING,PLAIN HOSE | |||||||||||||||
C2874051 | HARNESS,ETR CNT MDL WRG | |||||||||||||||
C2874066 | BLOCK,CYLINDER | |||||||||||||||
C2874071 | PULLEY,IDLER | |||||||||||||||
C2874076 | PLATE,OIL SEAL | |||||||||||||||
C2874077 | SCREW,HEX FLANGE HEAD CAP | |||||||||||||||
C2874078 | WASHER,PLAIN | |||||||||||||||
C2874079 | COVER,GEAR | |||||||||||||||
C2874091 | SCREW,HEX FLANGE HEAD | |||||||||||||||
C2874093 | HOUSING,OIL COOLER | |||||||||||||||
C2874120 | CONNECTION,AIR INTAKE | |||||||||||||||
C2874205 | CONNECTION,AIR TRANSFER | |||||||||||||||
C2874278 | PUMP,WATER | |||||||||||||||
C2874279 | ALTERNATOR | |||||||||||||||
C2874377 | TENSIONER,BELT | |||||||||||||||
C2874451 | CONNECTOR,BANJO | |||||||||||||||
C2874467 | UNION,MALE | |||||||||||||||
C2874490 | FILTER,LUBRICATING OIL | |||||||||||||||
C2874557 | CONNECTION,EXHAUST OUTLET | |||||||||||||||
C2874563 | CONNECTION,AIR TRANSFER | |||||||||||||||
C2874587 | VALVE,COUPLING | |||||||||||||||
C2874592 | PUMP,HYDRAULIC | |||||||||||||||
C2894940 | SENSOR,NITROGEN OXIHU (WEST LAKE) DIS. | |||||||||||||||
C2897331 | SENSOR,PRESSURE | |||||||||||||||
C2897333 | SENSOR,PRS TEMPERATURE | |||||||||||||||
C2897342 | SENSOR,POSITION | |||||||||||||||
C2897414 | INJECTOR | |||||||||||||||
C3 | BRACE,TUBE | |||||||||||||||
C3286494 | PIPE,AIR TRANSFER | |||||||||||||||
C3286499 | HOSE,PLAIN | |||||||||||||||
C3286550 | HOSE,PLAIN | |||||||||||||||
C3286575 | CONNECTION,EXHAUST OUTLET | |||||||||||||||
C3286613 | SPACER,MOUNTING | |||||||||||||||
C3286653 | BRACKET,ALTERNATOR | |||||||||||||||
C3286907 | BRACKET,BELT TENSIONER | |||||||||||||||
C3286908 | BRACKET,BELT TENSIONER | |||||||||||||||
C3287571 | SUPPORT,ALTERNATOR | |||||||||||||||
C3287099 | DIPSTICK | |||||||||||||||
C3287126 | CONNECTION,EXHAUST OUTLET | |||||||||||||||
C3287130 | MANIFOLD,EXHAUST | |||||||||||||||
C3287185 | COUPLING,PLAIN HOSE | |||||||||||||||
C3287186 | HOSE,MOLDED | |||||||||||||||
C3287193 | ADAPTER,CRANKSHAFT | |||||||||||||||
C3287202 | TUBE,CPR WATER INLET | |||||||||||||||
C3287204 | TUBE,CPR WATER OUTLET | |||||||||||||||
C3287206 | TUBE,CPR WATER OUTLET | |||||||||||||||
C3287208 | TUBE,CPR WATER OUTLET | |||||||||||||||
C3287210 | TUBE,CPR WATER INLET | |||||||||||||||
C3287272 | CLAMP,HOSE | |||||||||||||||
C3287273 | CONNECTOR,QCK DISCONNECT | |||||||||||||||
C3287274 | CONNECTOR,QCK DISCONNECT | |||||||||||||||
C32873). If you don’t have part no in hand, you can also tell us the engine number (8 Arab numbers, like25262227). CHINAMFG Quickserve on line could help. /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
How do you select the right idler pulley configuration for a specific task?Selecting the appropriate idler pulley configuration for a specific task involves considering several factors. Here are the key steps to guide you in the selection process: 1. Identify System Requirements: Understand the specific requirements of the task or application. Determine the type of belt or chain being used, the power transmission requirements, the operating conditions (such as temperature, speed, and load), and any specific constraints or limitations. 2. Determine Belt or Chain Type: Identify the type and specifications of the belt or chain being used in the system. This includes factors such as the belt width, pitch, tooth profile (for timing belts), and chain size. Knowing the characteristics of the belt or chain will help in selecting an idler pulley that is compatible and optimized for that specific type. 3. Consider Pulley Material and Construction: Select a pulley material that is suitable for the task at hand. Common options include steel, cast iron, aluminum, and various plastics. Consider factors such as the required strength, durability, corrosion resistance, and the environment in which the pulley will be operating. 4. Determine Pulley Size and Configuration: Calculate or determine the appropriate pulley size, including the diameter and width. Consider factors such as the desired belt tension, the required wrap angle (the contact area between the pulley and the belt), and any specific clearance or spacing requirements within the system. 5. Assess Bearing and Shaft Requirements: Consider the bearing and shaft requirements for the idler pulley. Determine the load capacity, rotational speed, and any specific mounting or attachment considerations. Select bearings and shafts that can handle the anticipated loads and provide smooth operation. 6. Consult Manufacturer Recommendations: Refer to the manufacturer’s recommendations or specifications for the idler pulley. Manufacturers often provide guidelines and technical data for their products, including load capacity charts, speed limits, and other relevant information. Ensure that the selected idler pulley aligns with these recommendations. 7. Evaluate Cost and Availability: Consider the cost and availability of the idler pulley. Evaluate different suppliers and compare prices, ensuring that the selected pulley offers a good balance of cost-effectiveness and quality. Additionally, ensure that the idler pulley is readily available when needed. 8. Installation and Maintenance: Lastly, consider the installation and maintenance requirements of the idler pulley. Ensure that it can be easily installed within the system and that any necessary adjustments or maintenance can be performed without significant hassle. By following these steps and considering the specific requirements of the task or application, you can select the right idler pulley configuration that ensures proper tensioning, reliable power transmission, and optimal performance in your specific task. Are there different types of idler pulleys, and how do they vary in applications?Yes, there are different types of idler pulleys that vary in design and application. Here’s a detailed explanation of the various types of idler pulleys and how they differ in their applications: 1. Flat Belt Idler Pulleys: Flat belt idler pulleys have a flat surface and are commonly used in applications where flat belts are used for power transmission. They are typically used in industrial machinery, conveyor systems, and agricultural equipment. Flat belt idler pulleys come in various diameters and are designed to guide and support the flat belt, ensuring proper tension and alignment. 2. V-Belt Idler Pulleys: V-belt idler pulleys are designed specifically for V-belt drives, which are widely used in automotive and industrial applications. These pulleys have a V-shaped groove that matches the cross-section of the V-belts, ensuring proper engagement and power transmission. V-belt idler pulleys are used in automotive engines, HVAC systems, and various industrial machinery. 3. Timing Belt Idler Pulleys: Timing belt idler pulleys are used in applications where timing belts are employed for synchronous power transmission. These pulleys have specially designed teeth or grooves that mate with the teeth on the timing belt, allowing precise motion control and synchronization. Timing belt idler pulleys are commonly found in automotive engines, CNC machines, robotics, and other precision machinery. 4. Chain Idler Pulleys: Chain idler pulleys are used in systems that utilize chains for power transmission. These pulleys have grooves or teeth that match the profile of the chain, providing proper engagement and tension. Chain idler pulleys are commonly employed in bicycles, motorcycles, industrial machinery, and conveyor systems using roller chains or timing chains. 5. Tensioner Pulleys: Tensioner pulleys are a specialized type of idler pulleys designed specifically for maintaining proper tension in automotive accessory drive systems. They are often used in conjunction with serpentine belts or multi-ribbed belts. Tensioner pulleys incorporate a spring-loaded mechanism that automatically adjusts the tension of the belt. These pulleys are critical for reliable operation and proper belt tension in automotive engines. 6. Specialty Idler Pulleys: In addition to the commonly used idler pulleys mentioned above, there are various specialty idler pulleys designed for specific applications. These may include idler pulleys with unique shapes, sizes, or specialized features to meet the requirements of specific industries or equipment. Specialty idler pulleys can be found in applications such as printing presses, textile machinery, packaging equipment, and more. The choice of idler pulley type depends on the specific application requirements, such as the type of belt or chain used, power transmission needs, space constraints, and environmental factors. Proper selection of the appropriate idler pulley ensures optimal performance, reliable power transmission, and extended system lifespan. How does the size and diameter of an idler pulley affect its performance?The size and diameter of an idler pulley play a significant role in determining its performance characteristics. Here’s a detailed explanation of how the size and diameter of an idler pulley affect its performance: 1. Tension and Belt Engagement: The size and diameter of an idler pulley impact the tension and engagement of the belt. A larger idler pulley will create more belt wrap around its circumference, resulting in increased belt contact and improved grip. This helps to maintain proper tension in the belt and prevent slippage, especially in high-torque applications. Conversely, a smaller idler pulley may have less belt wrap, leading to reduced grip and potentially lower tension. 2. Belt Speed: The size and diameter of an idler pulley affect the speed at which the belt travels. A larger idler pulley will cover a greater distance per revolution, resulting in a higher belt speed. This can be advantageous in applications where increased speed is desired. Conversely, a smaller idler pulley will cover a shorter distance per revolution, leading to a slower belt speed. 3. Belt Flexibility: The size and diameter of an idler pulley impact the flexibility of the belt. A larger idler pulley allows for a larger bend radius, reducing the stress on the belt and improving its durability. It also minimizes the risk of excessive bending or flexing that could lead to premature wear or failure. In contrast, a smaller idler pulley may require the belt to bend more sharply, potentially increasing the risk of damage or wear. 4. System Clearance: The size and diameter of an idler pulley affect the overall clearance in the mechanical system. In tight spaces or constrained environments, a smaller idler pulley may be preferred, as it requires less clearance. Conversely, a larger idler pulley may require additional space to accommodate its size. 5. Load Distribution: The size and diameter of an idler pulley impact its ability to distribute the load across the belt. A larger idler pulley can distribute the load over a larger surface area, reducing the stress on the belt and other components. It helps to minimize wear and prolong the life of the system. On the other hand, a smaller idler pulley concentrates the load on a smaller area, potentially increasing the risk of localized wear or failure. 6. Bearing Life and Friction: The size and diameter of an idler pulley influence the bearing life and friction within the system. Larger idler pulleys typically have larger bearings, which can handle higher loads and exhibit improved durability. They also tend to generate lower friction, leading to reduced heat and wear. In contrast, smaller idler pulleys may have smaller bearings that may have limitations in terms of load capacity and friction. It’s important to note that the specific requirements for size and diameter of an idler pulley will depend on the application and the intended function within the mechanical system. Factors such as belt type, load requirements, speed, and space constraints should be considered when selecting the appropriate size and diameter of an idler pulley for optimal performance.
2024-04-13 |