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How to reduce the friction of Tinned Copper Braided Sleeve?

April 26, 2023

Cable Sleeve have a unique feature of "high elasticity" at room temperature. The high elastic deformation of the Cable Sleeve comes from the relatively simple rotation of the bonds in its macromolecular chain, and the simple deformation of the entire macromolecule under the action of an external force. Because the rotation barrier ratio of its bonds is low, the modulus is low. Finally, because the thermal motion of the molecules is simply in line with its original deformation, that is, it changes in the direction of increase, so the Cable Sleeve will be stretched, which will reduce the value of the system and heat up.

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The Tinned Copper braided sleeve is made of a Cable Sleeve and a cloth layer. The quality of the Cable Sleeve and cloth is directly related to the pressure resistance/heat resistance/service life of the rubber strip. Tinned Copper Braided Sleeve is a shaft sealing device that relies on a pair or several pairs of end faces that are perpendicular to the shaft to slide relative to each other under fluid pressure and is equipped with auxiliary seals to prevent leakage. Tinned Copper Braided Sleeve is a hydraulic seal. Indispensable parts in pneumatic components. The compression rate is an important condition that affects the sealing effect. The larger the compression rate, the better the sealing performance, but the friction will increase.
Under the premise of ensuring reliable sealing, the compression should be as small as possible, so as to reduce the friction of the Tinned Copper Braided Sleeve and prolong the service life of the seal. Secondly, the raw material of the silicone rubber sealing strip can be improved. The improved Tinned Copper Braided Sleeve material can purposely affect the friction resistance and crawling performance of the Tinned Copper Braided Sleeve, but the Tinned Copper Braided Sleeve The influence of material improvement on wear resistance and extrusion performance should be considered in the process of pipe material improvement
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