Linear guide rails are essential mechanical components widely used in various industries for applications requiring precise motion control, high load-bearing capacity, and smooth linear movement.
Linear guide rails, also known as linear guides, are crucial components in various motion control systems, providing precise and smooth linear movement for a wide range of applications. Two popular types of linear guide rails are HGR and MGN series. While both serve the purpose of linear guidance,
In the realm of mechanical engineering and industrial applications, the precision and efficiency of motion control systems are paramount. Two key components that often come into play in these systems are linear rods and linear rails. While both are used to facilitate linear motion, they differ signi
Sliding doors are a popular choice in modern architecture, offering space-saving solutions and smooth functionality. A key component in ensuring their smooth operation is the curved linear guide system. This system reduces friction, enhances load-bearing capacity, and ensures precise movement control. Whether for residential, commercial, or industrial use, selecting the right curved linear guide rail is crucial for optimal performance. In this article, we’ll explore how curved guide rail systems work, their key components, and why they are ideal for sliding door applications. We will also discuss the different types of linear guide systems and their benefits.
Curved linear guide rails are essential mechanical components designed to provide smooth, precise motion along curved paths. These guide rails are used in a variety of industries, ranging from manufacturing to robotics, where precision movement and the ability to handle complex motion paths are critical. This article will explore the different types of curved linear guide rails, how they compare to traditional linear guide rails, and guide you on how to select the best solution for your applications.
A curved guide rail is a precision-engineered mechanical component designed to facilitate motion along a curved or circular path. Unlike traditional linear guide rails that operate along a straight line, curved guide rails enable machinery and equipment to move smoothly around bends or through complex motion trajectories. They are often used in systems requiring precision movement, such as CNC machinery, robotics, and automated conveyor systems.
GR Series
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Essential details of Flexible Claw Coupling
Modular C omponents
It is composed of two high-strength metal wheels (aluminum or steel) and an elastic buffer element in the middle. The split design is convenient for rapid installation and maintenance.
Elastic elements are made of polyurethane (T-PUR®) or styrene butadiene rubber, which transmit torque and absorb impact loads by compressive loading.
Elastomer buffer system
Elastic body hardness optional range: Shore hardness 50A-95A, to meet the torsional stiffness requirements of different working conditions.
The polyurethane material is oil resistant and corrosion resistant, and the temperature range of styrene butene rubber is -30℃ to +100℃. It is suitable for extreme environments such as metallurgy and ships.
item | value |
Applicable Industries | Hotels, Garment Shops, Building Material Shops, Manufacturing Plant, Machinery Repair Shops, Food & Beverage Factory, Farms, Restaurant, Home Use, Retail, Food Shop, Printing Shops, Construction works , Energy & Mining, Food & Beverage Shops, Other, Advertising Company |
Customized support | OEM, ODM, OBM |
Structure | Torque Limiter |
Flexible or Rigid | Rigid |
Standard or Nonstandard | Standard |
Place of Origin | Polyurethane |
Product Overview of Flexible Claw Coupling
Flexible claw coupling is a mechanical connection device that transmits torque through elastic elements (such as polyurethane, styrene butene rubber), which can effectively compensate axial, radial and angular deviations (±1.5°-3°). Its core structure is composed of two metal wheels and elastic buffer elements, which has both high bearing capacity and dynamic vibration reduction performance. It is suitable for industrial scenarios with high impact load and low accuracy requirements for installation.
Core Advantage of Flexible Claw Coupling
Dynamic buffer to reduce vibration
Elastomer elements, such as T-PUR® polyurethane, absorb the instantaneous impact load during start-up and shutdown, reducing the vibration amplitude of the drivetrain by more than 60%.
Stress is dispersed through elastomer deformation to avoid bearing wear and gear damage.
Multiway bias compensation
Axial displacement (±3mm), radial displacement (±2mm) and Angle deviation (±1.5°-5°) can be compensated, reducing the installation accuracy requirements.
Split design supports sliding seat adjustment for fast axial alignment.
Extreme condition adaptation
Elastic body temperature range of -30℃ to +100℃, anti-oil, anti-corrosion, suitable for metallurgical rolling mill, tunnel boring machine and other harsh environment.
The wheel is anodized or galvanized, and the resistance to salt spray corrosion meets ISO 9227 standard.
Maintenance-free long life
Elastic elements can be replaced individually without removing hub or moving equipment, reducing maintenance time by 70%.
The service life is over 100,000 hours under standard working conditions, which is 40% higher than the traditional coupling.
Parameters of Flexible Claw Coupling
Application Scenarios of Flexible Claw Coupling
Heavy industry Machinery : Rolling mill power shaft connection, withstand instantaneous impact and high temperature environment.
Ship Power System : Compensates for propeller shafting offset caused by hull deformation.
Automated production line : Robot joint drive, reduce the cost of servo motor installation and commissioning.
Energy equipment : A wind turbine drive system that suppresses torsional vibrations caused by wind loads.
Essential details of Flexible Claw Coupling
Modular C omponents
It is composed of two high-strength metal wheels (aluminum or steel) and an elastic buffer element in the middle. The split design is convenient for rapid installation and maintenance.
Elastic elements are made of polyurethane (T-PUR®) or styrene butadiene rubber, which transmit torque and absorb impact loads by compressive loading.
Elastomer buffer system
Elastic body hardness optional range: Shore hardness 50A-95A, to meet the torsional stiffness requirements of different working conditions.
The polyurethane material is oil resistant and corrosion resistant, and the temperature range of styrene butene rubber is -30℃ to +100℃. It is suitable for extreme environments such as metallurgy and ships.
item | value |
Applicable Industries | Hotels, Garment Shops, Building Material Shops, Manufacturing Plant, Machinery Repair Shops, Food & Beverage Factory, Farms, Restaurant, Home Use, Retail, Food Shop, Printing Shops, Construction works , Energy & Mining, Food & Beverage Shops, Other, Advertising Company |
Customized support | OEM, ODM, OBM |
Structure | Torque Limiter |
Flexible or Rigid | Rigid |
Standard or Nonstandard | Standard |
Place of Origin | Polyurethane |
Product Overview of Flexible Claw Coupling
Flexible claw coupling is a mechanical connection device that transmits torque through elastic elements (such as polyurethane, styrene butene rubber), which can effectively compensate axial, radial and angular deviations (±1.5°-3°). Its core structure is composed of two metal wheels and elastic buffer elements, which has both high bearing capacity and dynamic vibration reduction performance. It is suitable for industrial scenarios with high impact load and low accuracy requirements for installation.
Core Advantage of Flexible Claw Coupling
Dynamic buffer to reduce vibration
Elastomer elements, such as T-PUR® polyurethane, absorb the instantaneous impact load during start-up and shutdown, reducing the vibration amplitude of the drivetrain by more than 60%.
Stress is dispersed through elastomer deformation to avoid bearing wear and gear damage.
Multiway bias compensation
Axial displacement (±3mm), radial displacement (±2mm) and Angle deviation (±1.5°-5°) can be compensated, reducing the installation accuracy requirements.
Split design supports sliding seat adjustment for fast axial alignment.
Extreme condition adaptation
Elastic body temperature range of -30℃ to +100℃, anti-oil, anti-corrosion, suitable for metallurgical rolling mill, tunnel boring machine and other harsh environment.
The wheel is anodized or galvanized, and the resistance to salt spray corrosion meets ISO 9227 standard.
Maintenance-free long life
Elastic elements can be replaced individually without removing hub or moving equipment, reducing maintenance time by 70%.
The service life is over 100,000 hours under standard working conditions, which is 40% higher than the traditional coupling.
Parameters of Flexible Claw Coupling
Application Scenarios of Flexible Claw Coupling
Heavy industry Machinery : Rolling mill power shaft connection, withstand instantaneous impact and high temperature environment.
Ship Power System : Compensates for propeller shafting offset caused by hull deformation.
Automated production line : Robot joint drive, reduce the cost of servo motor installation and commissioning.
Energy equipment : A wind turbine drive system that suppresses torsional vibrations caused by wind loads.