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Chemical and microstructural changes induced by friction and wear of brakes

机译:制动器的摩擦和磨损引起的化学和微观结构变化

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The chemical and microstructural changes occurring during braking simulation tests at the surface of a conventional brake pad material were investigated mainly by scanning and transmission electron microscopy and surface analytical techniques. It can be shown that patches of a third body material develop, comprising a compositional mix of all constituents of the pad and iron oxides from the disk. Milled debris particles still have the crystal structure of barite, the major phase of the pad material, but the grain size is reduced drastically to the nanometer scale. The major wear mechanism is delamination of filler particles from the organic binder, supported by local degradation of the phenolic resin during asperity heating. Quartz crystals are preserved thereby adopting the function of primary contact areas.
机译:主要通过扫描和透射电子显微镜以及表面分析技术研究了在传统制动衬片材料的制动模拟测试过程中发生的化学和微观结构变化。可以看出,形成了第三主体材料的贴片,其包括垫的所有成分和来自盘的氧化铁的成分混合物。磨碎的碎屑颗粒仍具有重晶石的晶体结构,即垫块材料的主要相,但晶粒尺寸急剧减小至纳米级。主要的磨损机理是填料颗粒从有机粘合剂中脱层,并由粗糙加热过程中酚醛树脂的局部降解来支持。石英晶体得以保存,从而发挥了主要接触区域的功能。

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