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Tribological Performance of Friction Pairs with Different Materials and Bi-Composite Surface Texture Configurations

机译:摩擦对具有不同材料的摩擦性能和双复合表面纹理配置

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摘要

Bi-composite surface texture configurations are proposed to study the friction performance of a mechanical seal under low speed. Three sets of comparative experiments were designed. They involved friction pairs with different pairing materials, single texture patterns, and bi-composite surface texture configurations. Tribological performances, such as friction coefficient, wear quantity, and surface topography, were measured. The research results showed that the average friction coefficient and surface temperature rise of the 3-C3 group (triangular texture in SSiC–conventional spiral groove in SSiC) were only 0.052 and 3.8 °C, respectively, which was the smallest friction coefficient and lowest temperature rise of all the test subjects. What’s more, the wear of M120D was mainly caused by the cutting effect of the texture edges, the adhesive wear of the non-textured areas, and the secondary wear caused by debris from the internal texture. It was indicated that the bi-composite patterns of spiral-triangle could produce a ‘synergistic effect’ by improving tribological performance and reaching lower friction in low-rotational-speed operation, which could provide a basis for designing a long-lasting and exceptionally reliable mechanical seal.
机译:提出了双复合表面纹理配置,以研究低速下机械密封的摩擦性能。设计了三套比较实验。它们涉及具有不同配对材料,单纹理图案和双复合表面纹理配置的摩擦对。测量摩擦力的性能,例如摩擦系数,磨损量和表面形貌。研究结果表明,3-C3组的平均摩擦系数和表面温度升高(SSIC中的SSIC - 常规螺旋槽的三角形质地)分别为0.052和3.8°C,这是最小的摩擦系数和最低温度所有测试对象的兴起。更重要的是,M120D的磨损主要由纹理边缘的切削效果,非纹理区域的粘合剂磨损以及由内部纹理引起的碎屑引起的次要磨损。结果表明,螺旋三角形的双复合模式可以通过改善摩擦学性能并达到低旋转速度操作的较低摩擦来产生“协同作用”,这可以为设计持久和异常可靠的基础提供依据机械密封。

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