Dimension drawing

Technical parameters

Sliding guide shoes are usually composed of the following parts:
Guide shoe body: The guide shoe body is the main structural part of the sliding guide shoe, usually made of high-strength and wear-resistant materials, such as cast iron, steel or engineering plastics. The design of the guide shoe body needs to take into account its load-bearing capacity, wear resistance and impact resistance.
Sliding surface: The sliding surface is the part of the guide shoe that comes into direct contact with the moving parts. It is usually precisely processed to ensure a smooth and flat surface, thereby reducing frictional resistance. The material selection for the sliding surface is of vital importance, and wear-resistant alloys, ceramics or composite materials are usually adopted.
Lubrication system: To reduce friction and wear, sliding guide shoes are usually equipped with a lubrication system, which can be manual lubrication, automatic lubrication or self-lubrication system. The function of the lubrication system is to maintain the lubrication state of the sliding surface and extend the service life of the guide shoe.
Fixing device: The sliding guide shoe needs to be installed on the mechanical equipment through a fixing device. Common fixing methods include bolt connection, welding or snap connection. The design of the fixing device needs to ensure that the guide shoe does not loosen or shift during operation.
The working principle of the sliding guide shoe
The working principle of the sliding guide shoe is based on the interaction between sliding friction and lubrication. When the moving parts slide on the guide shoe, friction will be generated between the sliding surface of the guide shoe and the moving parts. To reduce friction, sliding guide shoes usually adopt materials with low friction coefficients and maintain the lubrication state of the sliding surface through a lubrication system.
Under normal working conditions, the sliding guide shoe can bear the weight of the moving parts and external loads, ensuring that the moving parts slide smoothly on the guide shoe. The sliding surface of the guide shoe is precisely processed, which can effectively reduce the vibration and noise of the moving parts, and improve the working accuracy and stability of the equipment.
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