Product Description
Product Description
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Item No. | ML-G series |
Material | Aluminum Alloy, Metal |
Colour | As required |
Surface Treatment | Zinc plated |
Application | sliding window and door wheel, furniture wheel, etc. |
Packaging | Standard carton |
MOQ | 10000 pcs |
Lead time | Depends on quantity |
FOB Port | HangZhou |
Company Type | Manufacturer |
Founded Time | 1997 |
OEM offered | Technical drawing or sample is needed |
Export market | Global |
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Product Categories
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About us
Our factory is specialized in manufacturing non-standard bearing, plastic and metal pulley, bracket pulley, roller, door and window fittings, etc.Relying on a series of advanced processing equipments, skilled workers, strict inspection system, and organized management, we are able to provide good-quality products with competitive price.
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Why choose us
1.Professional experience:Almost 20 years’ expenience in non-standard bearings, rollers, pulleys, and other plastic accessories for door and window.
2.Popular over the world:Over 20 market countries.
3.Advantage:Good quality with competitive price.
4.OEM offered:Technical drawings, samples or photos are needed
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Contact us
HangZhou CHINAMFG Pulley Manufacture Co., Ltd.
Website: http://nbminli /Â Â
Address: No.9 CHINAMFG Road, CHINAMFG Industrial Zone, Xihu (West Lake) Dis. District, HangZhou, China
FAQ
Q: How to get a quotation and start business relationship with your company?
 A: Please send us email and our sales representive will contact you as soon as we receive your email.
Q: How to receive a quotaion in the shortest time?
 A: When you send us an enquiry, please try to provide more details, such as product size, photo or drawing, order quantity, etc.Â
Q: How to start an OEM project with your company?
 A: Please send us your designed drawings or original samples so that we can offer a quotation first. If all details are confirmed, we will arrange sample production once received your deposit .
Q: What’s your MOQ?
A: The MOQ depends on the design and production processes of the products. Nomally our company MOQ is 10000pc , but it can be much more or less depending on different product types. Therefore, we recommend you to tell us your required quantity first.
Q:How long can IÂ receive an order?
A: That depends on the specific items and your order quantity. The lead time varies from 30 to 90 days.
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After-sales Service: | Online Technical Support |
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Warranty: | 2years |
Certification: | ISO, RoHS |
Samples: |
US$ 0.1/Piece
1 Piece(Min.Order) | Order Sample |
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Customization: |
Available
| Customized Request |
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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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How do double pulleys contribute to the functioning of rescue and rigging operations?
Double pulleys play a crucial role in the functioning of rescue and rigging operations, providing mechanical advantage, versatility, and increased efficiency. Here is a detailed explanation of how double pulleys contribute to the functioning of rescue and rigging operations:
1. Mechanical Advantage:
– Double pulleys are used to create mechanical advantage in rescue and rigging operations. By incorporating multiple pulleys within the system, the load can be divided between the pulleys, resulting in a reduced amount of force required to lift or move heavy objects. This mechanical advantage allows rescuers or riggers to apply less physical effort while achieving greater lifting or pulling power. Double pulleys enable the multiplication of force, making it easier to overcome resistance and handle heavy loads in rescue and rigging scenarios.
2. Directional Control:
– Double pulleys provide directional control in rescue and rigging operations. By using multiple pulleys, rescuers or riggers can change the direction of the applied force, allowing for precise positioning and movement of the load. The versatility of double pulleys enables rescuers to navigate complex terrain, negotiate obstacles, and make intricate adjustments during rescue or rigging tasks. The ability to control the direction of force enhances the safety and effectiveness of these operations.
3. Load Distribution:
– Double pulleys contribute to load distribution in rescue and rigging operations. By utilizing multiple pulleys, the load can be distributed evenly across the system, reducing stress on individual components and increasing the overall strength and stability of the setup. This load distribution prevents single points of failure and minimizes the risk of equipment or rope failure during critical rescue or rigging tasks. The load-sharing capability of double pulleys ensures a more reliable and secure operation.
4. Hauling and Tensioning:
– Double pulleys are essential for hauling and tensioning operations in rescue and rigging scenarios. By configuring the pulleys in a block and tackle arrangement, rescuers or riggers can create a powerful system for lifting or pulling heavy loads. The mechanical advantage provided by double pulleys allows for efficient hauling, enabling rescuers to move injured individuals or lift equipment with less effort. Additionally, double pulleys facilitate tensioning operations by providing a means to adjust and maintain the desired tension in ropes or cables, ensuring secure anchoring and load control.
5. Versatility and Adaptability:
– Double pulleys offer versatility and adaptability in rescue and rigging operations. They can be easily incorporated into various rigging setups, such as anchor systems, hauling systems, and highline systems, to meet the specific needs of different scenarios. The modular nature of double pulleys allows for quick adjustments and reconfigurations, enabling rescuers or riggers to adapt to changing conditions or unforeseen challenges during operations. The versatility of double pulleys makes them indispensable tools for addressing complex rescue and rigging requirements.
6. Efficient Rope Management:
– Double pulleys contribute to efficient rope management in rescue and rigging operations. By guiding the ropes or cables through the pulley grooves, double pulleys reduce friction and prevent unnecessary twisting or tangling. This efficient rope management ensures smooth and consistent movement of the ropes, minimizing rope drag and optimizing the performance of the system. Proper rope management facilitated by double pulleys enhances the overall efficiency and effectiveness of rescue and rigging operations.
7. Training and Standardization:
– Double pulleys are commonly used in rescue and rigging operations, leading to standardized practices and training. Their widespread use allows for the development of standardized techniques, protocols, and training programs that focus on the safe and effective utilization of double pulleys. Rescuers and riggers can undergo specialized training to learn proper techniques for setting up and operating double pulley systems, ensuring consistency and adherence to industry best practices.
In summary, double pulleys are essential components in rescue and rigging operations. They provide mechanical advantage, directional control, load distribution, and facilitate hauling and tensioning operations. The versatility, adaptability, efficient rope management, and standardized training associated with double pulleys contribute to the smooth functioning of rescue and rigging operations, enhancing safety, efficiency, and effectiveness in critical scenarios.
How does the arrangement of double pulleys affect their mechanical advantage?
The arrangement of double pulleys, also known as block and tackle systems or two-sheave pulleys, plays a crucial role in determining their mechanical advantage. Here is a detailed explanation of how the arrangement of double pulleys affects their mechanical advantage:
The mechanical advantage of a double pulley system is directly influenced by the number of supporting strands or “parts” of rope that are in tension. The arrangement of double pulleys refers to the configuration of pulley wheels and the path of the rope or cable within the system.
1. Fixed Pulley Arrangement:
– In a fixed pulley arrangement, one pulley is fixed to a stationary object, such as a beam or an anchor point, while the other pulley is attached to the load. The rope or cable forms a continuous loop, passing over the fixed pulley and then over the movable pulley attached to the load. This arrangement does not provide any mechanical advantage in terms of reducing the force required to lift the load. However, it changes the direction of the force, allowing for easier pulling or lifting in a different direction.
2. Movable Pulley Arrangement:
– In a movable pulley arrangement, both pulleys are attached to the load. The rope or cable forms a loop, with one end attached to a fixed point and the other end passing over the movable pulley and then attached to the load. This arrangement provides a mechanical advantage by dividing the load weight between two strands of rope. As a result, the force required to lift the load is halved compared to lifting it directly. The mechanical advantage in a movable pulley arrangement is expressed as “2:1”, indicating that the load is divided equally between the two supporting strands of rope.
3. Compound Pulley Arrangement:
– A compound pulley arrangement consists of multiple pulleys arranged in a combination of fixed and movable pulleys. The rope or cable passes over several pulleys, alternating between fixed and movable pulleys. This arrangement increases the mechanical advantage by increasing the number of supporting strands. For example, a compound pulley system with two fixed pulleys and one movable pulley provides a mechanical advantage of “3:1”, meaning the load is divided among three supporting strands of rope, reducing the force required to lift the load by one-third.
4. Multiple Blocks or Tackle Systems:
– Multiple blocks or tackle systems involve combining several double pulley arrangements to achieve even higher mechanical advantages. By incorporating additional pulleys and supporting strands, the mechanical advantage can be further increased. For instance, a system with two movable pulleys and two fixed pulleys arranged in a “4:1” configuration divides the load weight among four supporting strands, reducing the force required to lift the load by one-fourth.
It’s important to note that while the arrangement of double pulleys affects the mechanical advantage, it also impacts the distance the rope or cable must be pulled to move the load. As the mechanical advantage increases, the distance required to lift the load also increases. This trade-off between force and distance is inherent in pulley systems and should be considered when selecting the appropriate arrangement for a specific lifting task.
In summary, the arrangement of double pulleys, whether fixed, movable, compound, or multiple blocks, directly influences their mechanical advantage. The arrangement determines the number of supporting strands and the division of load weight, resulting in a reduction of the force required to lift the load. Selecting the appropriate arrangement is crucial to optimize the mechanical advantage based on the specific lifting requirements and constraints.
What types of ropes or cables are typically employed with double pulleys?
When using double pulleys, various types of ropes or cables can be employed depending on the specific application and load requirements. Here is a detailed explanation of the types of ropes or cables typically used with double pulleys:
1. Synthetic Fiber Ropes:
– Synthetic fiber ropes, such as nylon or polyester ropes, are commonly used with double pulleys. These ropes offer several advantages, including high strength-to-weight ratio, flexibility, and resistance to abrasion. They are lightweight and easy to handle, making them suitable for a wide range of lifting and rigging applications. Synthetic fiber ropes are commonly employed in industries such as construction, marine, and recreational activities.
2. Steel Wire Ropes:
– Steel wire ropes, also known as steel cables or wire cables, are frequently used in heavy-duty applications where high strength and durability are required. These ropes consist of multiple strands of steel wires twisted together to form a strong and resilient cable. Steel wire ropes offer excellent tensile strength and resistance to corrosion, making them suitable for demanding environments such as mining, construction, and material handling industries.
3. Polypropylene Ropes:
– Polypropylene ropes are lightweight and have good resistance to chemicals, water, and UV radiation. They are commonly used in applications where low weight and buoyancy are desired, such as water sports, marine applications, and lightweight lifting tasks.
4. Manila Ropes:
– Manila ropes are made from natural fibers derived from the abaca plant. They offer good strength and are resistant to abrasion. Manila ropes are commonly used in applications where a traditional and natural fiber rope is preferred, such as decorative purposes, landscaping, and light to medium lifting tasks.
5. High-Strength Synthetic Ropes:
– In certain heavy-duty applications, high-strength synthetic ropes like Dyneema® or Spectra® are employed with double pulleys. These ropes are made from ultra-high molecular weight polyethylene fibers and offer exceptional strength, low stretch, and lightweight properties. They are commonly used in industries such as offshore, mining, and heavy lifting, where superior performance and safety are critical.
It’s important to consider the specific characteristics and properties of ropes or cables when selecting the appropriate type for a double pulley system. Factors such as load capacity, working conditions, environmental factors, and desired flexibility or rigidity should be taken into account to ensure safe and efficient operation.
editor by CX
2024-04-24