Product Description
MIC NO. | OEM.NO | APPLICATION | YEAR | PHOTO |
TB34FI5711 | 351241 46755714 504086751 BMW : BMW : 1128171 BMW :T.v. BMW : BMW :T.v. BMW : BMW : BMW : BMW : BMW : 1433502 BMW : 171 BMW : 1742858T.v. BMW : 1745546 BMW : 1745546T.v. BMW : 7503424 BMW : 7515864 BMW : 7515865 BMW : 7563927 FIAT : 46755714 FIAT : 504T.v. FIAT : 504086751 FIAT : 504086751T.v. CHINAMFG : 504086751 CHINAMFG : 504086751T.v. LAND ROVER : PQGR571 MERCEDES-BENZ : 6112T.v. MERCEDES-BENZ : 6112T.v. MERCEDES-BENZ : 6112T.v. MERCEDES-BENZ : 6112 MERCEDES-BENZ : 6462R571 CHINAMFG : 1662R571T.v |
FIAT DUCATO Box (244_) 2.3 JTD FIAT DUCATO Box (250_, 290_) 110 Multijet 2,3 D FIAT DUCATO Box (250_, 290_) 120 Multijet 2,3 D FIAT DUCATO Box (250_, 290_) 120 Multijet 2,3 D 4×4 FIAT DUCATO Box (250_, 290_) 130 Multijet 2,3 D FIAT DUCATO Box (250_, 290_) 150 Multijet 2,3 D FIAT DUCATO Box (250_, 290_) 180 Multijet 2,3 D FIAT DUCATO Bus (244_) 2.3 JTD FIAT DUCATO Bus (250_, 290_) 110 Multijet 2,3 D FIAT DUCATO Bus (250_, 290_) 120 Multijet 2,3 D FIAT DUCATO Bus (250_, 290_) 130 Multijet 2,3 D FIAT DUCATO Bus (250_, 290_) 150 Multijet 2,3 D FIAT DUCATO Platform/Chassis (244_) 2.3 JTD FIAT DUCATO Platform/Chassis (250_, 290_) 110 Multijet 2,3 D FIAT DUCATO Platform/Chassis (250_, 290_) 120 Multijet 2,3 D FIAT DUCATO Platform/Chassis (250_, 290_) 120 Multijet 2,3 D 4×4 FIAT DUCATO Platform/Chassis (250_, 290_) 130 Multijet 2,3 D FIAT DUCATO Platform/Chassis (250_, 290_) 150 Multijet 2,3 D IVECO DAILY III Box Body/Estate 29 L 10 V (ALJA43A2, ALJA42A2, ALJA41A2) IVECO DAILY III Box Body/Estate 29 L 12 V (ALKA41A2, ALLA52A2, ALKA42A2) IVECO DAILY III Box Body/Estate 29 L 14 IVECO DAILY III Box Body/Estate 35 C 12 V, 35 S 12 V IVECO DAILY III Box Body/Estate 35 C 14, 35 S 14 IVECO DAILY III Box Body/Estate 35 S 10 (ANJA41A1, ANJA43A, ANJAV1A,… IVECO DAILY III Bus 35 S 12, 35 C 12, 40 C 12 IVECO DAILY III Platform/Chassis 29 L 10 (ALJAV1A1, ALJA41AA,…. IVECO DAILY III Platform/Chassis 29 L 12 (ALKA41A1, AHKA64A1, ALLA51A1) IVECO DAILY III Platform/Chassis 29 L 14 IVECO DAILY III Platform/Chassis 35 C 10 V , 35 S 10 V IVECO DAILY III Platform/Chassis 35 C 12 , 35 S 12 IVECO DAILY III Platform/Chassis 35 C 14, 35 S 14 IVECO DAILY IV Box Body/Estate 29L10 V IVECO DAILY IV Box Body/Estate 29L12 V, 29L12 V/P IVECO DAILY IV Box Body/Estate 29L14 C, 29L14 C/P, 29L14 V, 29L14 V/P IVECO DAILY IV Box Body/Estate 35C10, 35S10 IVECO DAILY IV Box Body/Estate 35C11 V, 35S11 V IVECO DAILY IV Box Body/Estate 35C12 V, 35C12 V/P, 35S12 V, 35S12 V/P IVECO DAILY IV Box Body/Estate 35C13 V, 35C13 V/P, 35S13 V, 35S13 V/P IVECO DAILY IV Box Body/Estate 35S14 C, 35S14 C/P, 35C14 V,… IVECO DAILY IV Box Body/Estate 40C10 V IVECO DAILY IV Box Body/Estate 40C11 V IVECO DAILY IV Box Body/Estate 40C12 V, 40C14 V/P IVECO DAILY IV Box Body/Estate 40C13 V, 40C13 V/P IVECO DAILY IV Bus 35S14, 35S14 /P IVECO DAILY IV Dump Truck 35C10 K IVECO DAILY IV Dump Truck 35C11 K, 35C11 DK, 35S11 K, 35S11 DK IVECO DAILY IV Dump Truck 35C12 IVECO DAILY IV Dump Truck 35C13 K, 35C13 DK, 35S13 K, 35S13 DK IVECO DAILY IV Dump Truck 35S14 K, 35S14 DK IVECO DAILY IV Platform/Chassis 29L10 IVECO DAILY IV Platform/Chassis 29L12 IVECO DAILY IV Platform/Chassis 29L14 IVECO DAILY IV Platform/Chassis 35C10, 35S10 IVECO DAILY IV Platform/Chassis 35C11, 35S11, 35S11 D, 35S11 /P IVECO DAILY IV Platform/Chassis 35C12, 35S12 IVECO DAILY IV Platform/Chassis 35C13, 35C13 /P, IVECO DAILY IV Platform/Chassis 35C14, 35S14, 35S14 /P IVECO DAILY IV Platform/Chassis 40C10 IVECO DAILY IV Platform/Chassis 40C11, 40C11 D IVECO DAILY IV Platform/Chassis 40C12 IVECO DAILY IV Platform/Chassis 40C13, 40C13 /P IVECO DAILY V Box Body/Estate 29L11 V, 35C11 V, 35S11 V, 40C11 V IVECO DAILY V Box Body/Estate 29L13 V, 35C13 V, 35S13 V, 40C13 V IVECO DAILY V Box Body/Estate 29L15 V, 35S15 V, 35C15L V, 40C15L V, IVECO DAILY V Dump Truck 35C11K, 35S11DKP IVECO DAILY V Dump Truck 35C13K, 35C13DKP IVECO DAILY V Platform/Chassis 26L11, 26L11D, 35C11D, 35S11, 40C11 IVECO DAILY V Platform/Chassis 29L13, 29L13D, 35C13D, 40C13 IVECO DAILY V Platform/Chassis 29L15 V, 35S15, 35C15L V, 40C15L V IVECO DAILY VI Box 33S11, 35S11, 35C11 IVECO DAILY VI Box 33S12, 35S12, 35C12 IVECO DAILY VI Box 33S13, 35S13, 35C13 IVECO DAILY VI Box 33S14, 35S14, 35C14 IVECO DAILY VI Box 33S15, 35S15, 35C15 IVECO DAILY VI Box 33S16, 35S16, 35C16 IVECO DAILY VI Box Body/Estate 33S12, 35S12 IVECO DAILY VI Box Body/Estate 33S14, 35S14 IVECO DAILY VI Box Body/Estate 33S16, 35S16 IVECO DAILY VI Platform/Chassis 33S11, 35S11, 35C11 IVECO DAILY VI Platform/Chassis 33S12, 35S12, 35C12 IVECO DAILY VI Platform/Chassis 33S13, 35S13, 35C13 IVECO DAILY VI Platform/Chassis 33S14, 35S14, 35C14 IVECO DAILY VI Platform/Chassis 33S15, 35S15, 35C15 IVECO DAILY VI Platform/Chassis 33S16, 35S16, 35C16 |
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After-sales Service: | Online Technical Support |
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Warranty: | One Year |
Car Make: | FLAT |
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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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Can flat belt pulleys be part of woodworking and milling equipment?
Yes, flat belt pulleys can be an integral part of woodworking and milling equipment. Here’s a detailed explanation:
1. Power Transmission:
Flat belt pulleys are commonly used in woodworking and milling equipment to transmit power from a motor or engine to various components. They serve as driving pulleys, connecting the power source to critical machine parts such as saw blades, cutters, drills, or spindles. The efficient power transmission facilitated by flat belt pulleys ensures the smooth and precise operation of these components, enabling accurate woodworking and milling processes.
2. Speed Control:
Woodworking and milling equipment often require adjustable speed control for different tasks and materials. Flat belt pulleys, in combination with adjustable speed drives, allow operators to control the rotational speed of the driven components. By selecting pulleys of different sizes or adjusting the pulley positions, the speed ratios can be modified to match specific cutting or milling requirements, ensuring optimal machine performance and quality of the finished products.
3. Load Capacity:
Woodworking and milling equipment handle various types and sizes of materials, which may exert different loads on the machines. Flat belt pulleys are designed to handle different load capacities based on the specific requirements of the equipment. The pulley’s diameter and width are chosen to provide adequate support and load-bearing capacity for the belt, enabling the machines to handle different workpieces effectively.
4. Belt Tensioning and Tracking:
Proper belt tensioning and tracking are crucial in woodworking and milling equipment to ensure accurate cuts and milling operations. Flat belt pulleys are equipped with tensioning mechanisms and tracking features to maintain the appropriate belt tension and alignment. This helps prevent belt slippage, ensures precise movement of the workpiece, and minimizes the occurrence of errors or defects in the woodworking and milling processes.
5. Versatility:
Flat belt pulleys offer versatility in woodworking and milling equipment design. They can be used in various types of machines, such as table saws, band saws, planers, routers, and milling machines. The flexibility of flat belts also enables efficient movement around pulleys of different sizes and configurations, catering to the specific needs of different woodworking and milling tasks.
6. Durability and Precision:
Woodworking and milling equipment require pulleys that are durable and capable of providing precise power transmission. Flat belt pulleys are often constructed from materials such as cast iron or steel, ensuring strength and longevity. The precision of the pulley design, including accurate machining and balance, contributes to the overall precision of the woodworking and milling processes.
7. Maintenance and Replacement:
Flat belt pulleys in woodworking and milling equipment are relatively easy to maintain and replace. Regular inspection and lubrication of the pulleys, along with routine belt tension checks, contribute to efficient operation and prevent unexpected breakdowns. When replacement is necessary, flat belts and pulleys are readily available, minimizing downtime and ensuring uninterrupted woodworking and milling operations.
In summary, flat belt pulleys are commonly incorporated into woodworking and milling equipment to facilitate efficient power transmission, enable speed control, handle varying load capacities, ensure belt tensioning and tracking, offer versatility, provide durability and precision, and allow for easy maintenance and replacement. Their proper selection and maintenance are crucial for achieving high-quality woodworking and milling results.
How do flat belt pulleys handle different belt sizes and materials?
Flat belt pulleys are designed to accommodate different belt sizes and materials to ensure efficient power transmission. Here’s a detailed explanation:
1. Belt Sizes:
Flat belt pulleys are available in various sizes to match different belt widths and thicknesses. The width of the pulley’s groove is designed to provide proper contact and grip with the belt. Pulleys with wider grooves are used for wider belts, while narrower grooves are used for narrower belts. The pulley’s diameter may also vary depending on the specific application and power requirements.
2. Belt Materials:
Flat belt pulleys can handle a wide range of belt materials, including:
- Rubber: Rubber belts are commonly used due to their flexibility, high friction coefficient, and resistance to wear. They provide good grip and are suitable for most general-purpose applications.
- Polyurethane: Polyurethane belts offer high resistance to abrasion, oil, and chemicals. They are often used in applications that require superior performance and durability.
- Leather: Leather belts are known for their high strength and flexibility. They are used in applications where a certain level of slip is required or to transmit power in antique or vintage machinery.
- Nylon: Nylon belts are lightweight, have high tensile strength, and offer good resistance to wear and moisture. They are commonly used in applications that require low noise and high load capacity.
3. Belt Tensioning:
Flat belt pulleys should be designed with a tensioning mechanism to accommodate different belt sizes and maintain proper tension. This mechanism, such as an idler pulley or tensioning screw, allows for easy adjustment of the belt tension to ensure optimal power transmission and prevent slippage.
4. Belt Tracking:
To handle different belt sizes and materials, flat belt pulleys should be designed to provide proper belt tracking. This ensures that the belt stays within the pulley’s groove and maintains alignment during operation. Proper flanges or guides are often incorporated into the pulley design to prevent the belt from slipping off or wandering.
5. Material Compatibility:
The materials used in flat belt pulleys should be selected to be compatible with the specific belt materials. For example, if using a rubber belt, the pulley material should not cause excessive wear or damage to the belt’s surface. Compatibility between the pulley and the belt material helps ensure optimal performance and longevity.
By considering these factors, flat belt pulleys can effectively handle different belt sizes and materials, providing reliable power transmission in a wide range of applications.
What are the key components and design features of a flat belt pulley?
A flat belt pulley consists of several key components and design features that enable its functionality. Here’s a detailed explanation:
1. Pulley Body:
The pulley body forms the main structure of the flat belt pulley. It is typically cylindrical or disk-shaped and is made of durable materials such as cast iron, steel, or aluminum. The pulley body provides the foundation for the other components and supports the flat belt during operation.
2. Pulley Surface:
The surface of a flat belt pulley is designed to accommodate the flat belt. It may be flat or slightly concave to enhance belt contact and improve power transmission efficiency. The surface finish is chosen to optimize friction and traction between the pulley and the flat belt, reducing slippage and ensuring reliable power transfer.
3. Belt Grooves:
Some flat belt pulleys feature grooves or channels on their surface to accommodate the flat belt. These grooves provide a secure fit for the belt, preventing it from slipping or coming off the pulley during operation. The number and configuration of the grooves may vary depending on the specific application and belt requirements.
4. Hub or Bore:
The hub or bore is the central opening in the pulley body that allows the pulley to be mounted on a shaft. It is typically cylindrical and matches the diameter of the shaft. The hub may have keyways, set screws, or other mechanisms to ensure a secure and precise connection between the pulley and the shaft.
5. Keyway:
A keyway is a slot or groove machined into the bore of the flat belt pulley. It is used to accommodate a key, which is a small, rectangular metal piece. The key prevents the pulley from rotating independently on the shaft by providing a positive engagement between the pulley and the shaft.
6. Set Screws or Locking Mechanisms:
In addition to or instead of a keyway, flat belt pulleys may incorporate set screws or other locking mechanisms to secure the pulley to the shaft. These mechanisms allow for easy installation and removal of the pulley while ensuring it remains firmly in place during operation.
7. Balance and Alignment Features:
Flat belt pulleys are often balanced and aligned to minimize vibration and ensure smooth operation. Imbalances can lead to increased wear on the belt, bearings, and other components, as well as contribute to noise and reduced performance. Balancing techniques, such as counterweights or precision machining, are employed to achieve optimal balance. Additionally, pulleys may incorporate features like crowned surfaces or tracking guides to aid in belt alignment, reducing the risk of misalignment and optimizing power transmission.
8. Protective Coatings or Finishes:
To enhance durability and corrosion resistance, flat belt pulleys may be coated with protective finishes or coatings. These coatings, such as paint, powder coating, or specialized treatments, help protect the pulley from environmental factors, moisture, and wear, extending its service life.
In summary, the key components and design features of a flat belt pulley include the pulley body, pulley surface, belt grooves, hub or bore, keyway, set screws or locking mechanisms, balance and alignment features, as well as protective coatings or finishes. These elements work together to ensure efficient power transmission and reliable operation in machinery.
editor by CX
2024-05-03