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Powder metallurgy processed metal-matrix friction materials for space applications

机译:用于空间应用的粉末冶金加工金属矩阵摩擦材料

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摘要

Abstract Owing to the increasing demand for tribological brakes for space applications, the development of novel materials and advanced technologies is necessary. This paper presents the design, characterization, and realization of powder metallurgy processed metal-matrix friction materials intended for the above-mentioned tribological brakes. Selecting appropriate ingredients, which provides an effective way to tailor the properties of the friction material, is evolving as a strategy to meet the design requirements. The tribological behaviors of the friction material are experimentally investigated under different conditions, and special attention is focused on the vacuum tribology. Examinations and analyses of the friction surface and subsurface corroborate the wear mechanism. In addition, the erosion resistances of the friction material are evaluated by exposure tests of ultraviolet irradiation and atomic oxygen. Finally, present and potential space applications of the friction material are also introduced based on experimental studies.
机译:摘要由于对于空间应用的摩擦刹车的需求越来越大,新材料和先进技术的开发是必要的。本文介绍了用于上述摩擦制动器的粉末冶金加工金属矩阵摩擦材料的设计,表征和实现。选择合适的成分,它提供了定制摩擦材料性质的有效方法,正在发展成为满足设计要求的策略。在不同条件下实验研究摩擦材料的摩擦行为,特别关注真空摩擦学。摩擦面和地下磨损机构的检查和分析。另外,通过紫外线辐射和原子氧的曝光试验来评估摩擦材料的腐蚀电阻。最后,还基于实验研究引入了摩擦材料的存在和潜在空间应用。

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