5mm x 5mm GICG stainless steel parallel lines clamp type shaft coupling for stepper motor servomotor D12L18.5
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Specifications:
- Type: Flexible Shaft Coupling
- Material: Aluminum
- Inner Hole Size: 5mm x 5mm
- Outside Diameter:12mm
- Length:18.5mm
Features:
- The structure is simple, easy to install, buffer, damping, convenient to disconnect.
- The size is complete and the surface is smooth.
- The elastic connection, you can absorb vibration, compensate radial, angular and axial misalignment.
- Shaft coupler Often used to connect servo motor stepper motor, encoder screw driving machine platform etc.
Package:
1x GICG stainless steel parallel lines clamp type shaft coupling for stepper motor servomotor D12L18.5
Product Description
Features:
- High-quality aluminum material construction.
- Precise dimensions: Inner hole size of 5mm x 5mm, outside diameter of 12mm, and length of 18.5mm.
- Simple clamp type design for easy installation and disconnection.
- Buffering and damping capabilities for enhanced system stability.
- Smooth surface finish reduces friction for smoother operation.
- Elastic connection absorbs vibrations and compensates for misalignments.
- Versatile application: Suitable for connecting servo motors, stepper motors, encoders, and screw driving machines.
- Reliable performance in various operating conditions.
- Contributes to improved system efficiency.
- Minimizes maintenance requirements.
The GICG stainless steel parallel lines clamp type shaft coupling designed specifically for stepper motors and servomotors, the D12L18.5 model offers precision and reliability in your mechanical systems. Crafted from high-quality aluminum material, this coupling ensures durability and longevity in various applications.
With an inner hole size of 5mm x 5mm and an outside diameter of 12mm, this coupling is meticulously engineered to accommodate precise shaft sizes, providing a secure and efficient connection between components. Its compact length of 18.5mm makes it suitable for space-constrained installations without compromising on performance.
Applications:
Robotics: Used to connect motors, encoders, and other components in robotic systems, ensuring precise and efficient motion control.
Automation Systems: Employed in various automation setups, such as conveyor belts, packaging machinery, and assembly lines, to synchronize and transmit motion between different components.
CNC Machining: Integrated into CNC machines to connect the motor shaft with lead screws or ball screws, enabling accurate and controlled movement of the cutting tool.
3D Printing: Utilized to link stepper motors with lead screws or belts in 3D printers, facilitating precise positioning and layering of the printing material.
Industrial Equipment: Applied in various industrial machinery, such as pumps, fans, and compressors, for smooth and reliable power transmission between motor and driven components.
Medical Devices: Incorporated into medical equipment, including diagnostic machines and surgical robots, to ensure precise movement and operation during procedures.
Aerospace: Used in aerospace applications for controlling movements of actuators, valves, and control surfaces in aircraft and spacecraft.
Automotive: Integrated into automotive systems for applications such as steering systems, throttle control, and transmission linkages, ensuring precise and responsive vehicle control.
Renewable Energy: Applied in wind turbines and solar tracking systems to connect motors with rotating components, optimizing energy production and efficiency.
Laboratory Equipment: Utilized in laboratory instruments and experimental setups for precise positioning and movement control, ensuring accurate data collection and experimentation.
Frequently asked questions (FAQ):
What is the maximum torque this shaft coupling can handle?
- The maximum torque capacity of this shaft coupling depends on factors such as the material and design. Typically, the manufacturer specifies the torque rating, ensuring it can withstand the forces exerted during operation.
Can this coupling compensate for misalignment between shafts?
- Yes, this shaft coupling is designed to compensate for radial, angular, and axial misalignments. Its elastic connection absorbs vibrations and allows for slight deviations between shafts, maintaining smooth operation.
Is this coupling suitable for high-speed applications?
- Yes, this coupling is designed to handle high-speed rotations common in motor-driven systems. Its buffering and damping capabilities ensure stability and minimize vibrations even at high speeds.
What maintenance is required for this shaft coupling?
- Generally, this shaft coupling requires minimal maintenance. Periodic inspection for wear and tear, ensuring proper alignment, and lubrication of moving parts if necessary are typical maintenance tasks to ensure continued performance.
Can this coupling be used in harsh environments or exposed to moisture?
- While this coupling is durable and reliable, exposure to harsh environments or moisture may affect its performance and lifespan. It's recommended to protect the coupling from excessive moisture, corrosive substances, and extreme temperatures for optimal operation.
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