Product Description
High Performance Pulley for Belt Conveyors
BRIEF INTRODUCTION
Our company has adopted proprietary technology and equipment imported from German PWH company for the design and manufacturing of various pulleys . As a key component of the conveyor, the pulley should have high reliability. Our company’s R&D center has improved the pulley structure, reduced structural stress, and increased the lifespan and reliability of the pulley group through finite element analysis and optimization calculations. Our company’s pulley is manufactured from specialized high-end manufacturing equipment and has achieved serialized and large-scale production.
We have produced conveyor pulleys for belt width up to 2.4 m, pulley diameter up to 1.8 m, and maximum tension up to 300 tons.
PRODUCT INFORMAITON
Product Name | Pulley |
Adhesive Material | smooth, ordinary rubber, wear-resistant rubber, UHMW-PE, rubber ceramic, etc.. |
Adehensive Treatment | glued or casted |
Carrying Capacity | light, medium and heavy type |
Connection Mode | Shafts and wheels of the medium and heavy-duty pulley are connected by expansion sleeves. |
Pulley Pipe | made of Q235B carbon steel, with high roundness and straightness ensuring rotation balance |
Shaft | 45 # round steel or according to your requirements; ultrasonic inspection, quenching and tempering treatment, strict control of key fit size tolerances, greatly extending service life. |
Bearing Brands | Havalo, SKF, FAG, SNK or according to your requirements |
Bear Seat | Integral bearing seat, partial bearing seat |
Color | bright red paint or according to your requirements |
VARIOUS TYPES OF PULLEY ADHESIVE SURFACE
BEARING SEAT MODE
TECHNICAL SPECIFICATIONS & PARAMETERS
Technical Parameters for Belt Conveyor Pulley | ||||||
Belt Width (mm) | Pulley Standard Diameter without Adhesive Layer(mm) | |||||
650 | 200,250,320,400,500,630 | |||||
800 | 200,250,320,400,500,630,800,1000,1250 | |||||
1000 | 250,320,400,500,630,800,1000,1250,1400,1600 | |||||
1200 | 250,320,400,500,630,800,1000,1250,1400,1600 | |||||
1400 | 320,400,500,630,800,1000,1250,1400,1600 | |||||
1600 | 400,500,630,800,1000,1250,1400,1600 | |||||
1800 | 250,400,500,630,800,1000,1250,1400,1600 | |||||
2000 | 400,500,630,800,1000,1250,1400,1600 |
Technical Parameters | ||
1 | Outer Circle Diameter D Deviation | 200 ≤ 1.5 400 ≤ 2.0 1000 ≤ 2.5 |
2 | Radial Runout of Outer Circle | D ≤ 200 ; without adhesive 0.3 ;with adhesive 0.5 200 < D ≤ 800 ; without adhesive 0.6; with adhesive 1.1 800 < D ≤ 1600 ; without adhesive 1.0; with adhesive 1.5 1600 < D ≤ 1800 ; without adhesive 1.5; with adhesive 2.0 |
3 | Static Balance Accuracy | G40 |
PROCESS FLOW OF PULLEY
Our company is equipped with necessary equipment for processing pulleys, such as large oil pressure machines, rolling machines, specialized pulley automatic explosive welding operators, large diameter lathes, boring machines, ultrasonic flaw detectors, static balancing devices, pressure casting machines, etc. Due to the special correction process adopted by the company, the pulley pipe skin is rounded before processing, and the pulley pipe wall is uniform after processing, thereby ensuring that the pulley has high static balance performance and high mechanical performance.
PRODUCT FEATURES
For pulleys with complex forces, large loads and used in heavy working conditions, they all adopt a cast welded structure and expansion sleeve connection. Compared with traditional drums in China, this type of drum mainly has the following characteristics :
(1) The structural parameters of the pulley are advanced and reasonable, and there is a dedicated computer calculation program to determine the shaft diameter, cylinder skin thickness, wheel amplitude plate shape and spacing, as well as the position of the circumferential weld seam set at the position where the stress is minimum and the number of cycles is minimum.
(2) The key technology of using single sided welding and double sided forming ensures the quality of the weld seam.
(3) The expansion sleeve connection is used between the drum hub and shaft, which not only solves the problem of key connection stress concentration that has been existing for many years and the technical difficulties of manufacturing and installing axial double keyways, but also achieves overall quenching and eliminates welding internal stress.
(4) The circumferential and longitudinal welds of the pulley have undergone non-destructive testing, and the casting quality of the wheel hub has undergone magnetic particle or ultrasonic testing.
(5) The total radial runout of the outer circle after roller casting is less than 1mm.
(6) All drums undergo static balance tests before leaving the factory to achieve G40 accuracy.
(7) All driving pulley and directional pulley with high stress have undergone finite element analysis to ensure that the stress and strain of the rollers meet the requirements.
Due to a series of measures taken, the pulley group produced by SK has a reasonable structure, large bearing capacity, and reliable performance. And it overcomes the problem of fatigue fracture at the welding seam of the existing pulley plate in China. The pullley (including the welding part) is guaranteed to have a rotational fatigue strength of over 108°.
WORKSHOP OF FINISHED PULLEIES
PACKAGE AND DELIVEYR
APPLICATION INDUSTRIES
CONVEYORS EPC/BOT CONTRACTING CAPABILITY
VARIOUS CONVEYOR SPARE PARTS SUPPLY
AERIAL VIEW OF OUR FACTORY
INTELLIGENT PRODUCTION & TESTING
CERTIFICATES & HORNORS
BRANCHES & OFFICES
TEAM BUILDING
LONG-TERM STRATEGIC COOPEATORS
MAIN CUSTOMERS
CUSTOMERS VISITS
DOMESTIC & OVERSEAS EXHIBITIONS
SINGING CEREMONY
GLOBAL BUSINESS NETWORK
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Certification: | CE, ISO |
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Pulley Sizes: | Kk |
Manufacturing Process: | Forging, Casting |
Material: | Carbon Steel |
Surface Treatment: | Smooth, Rubber or Ceramics |
Application: | Chemical Industry, Grain Transport, Mining Transport, Power Plant, Port, Dock, Energy, Cement, Metallurgy, Steel |
Samples: |
US$ 7/Piece
1 Piece(Min.Order) | |
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Customization: |
Available
| Customized Request |
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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.
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.
editor by CX
2024-01-24