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Effects of ZrSiO{sub}4 in non-metallic brake friction materials on friction performance

机译:非金属制动摩擦材料中ZrSiO {sub} 4对摩擦性能的影响

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The effects of ZrSiO{sub}4 (zirconium silicate or zircon) as an abrasive on brake friction performance and friction layers of non-metallic brake friction materials were evaluated. The experimental results indicated that ZrSiO{sub}4 enhances friction coefficient, but depresses wear rate. However, ZrSiO{sub}4 can improve the negative wear rate of the friction materials. The formation and development of friction layers are complex so that the friction layers formed during friction process were carefully characterized using scanning electron microscopy (SEM), light microscopy (LM), and X-ray diffraction (XRD) methods. Following characteristics of friction layers were identified - (1) dynamic behavior: the structure of friction layers changes at the different sacrificial positions and across sample's thickness; (2) friction condition dependence: formation of friction layers depends upon temperatures, time, and thermal history such as fade and recovery; and (3) compositional dependence: the compositions of friction surface and bulk differ, nevertheless the bulk's composition determine the friction layers. The phenomena as baryte films, altered layers, iron patches, and zircon loose areas formed on the friction surfaces were observed. Baryte films were detected on the friction surfaces of Zr-O (sample without zircon). Baryte films have positive effect on wear property, but the films disappear in the presence of ZrSiO{sub}4. The amount of carbonaceous materials decreases with the increase in ZrSiO{sub}4. Only negligible thickness of altered layers was found on the friction surfaces of Zr-O sample, while samples containing zircon show out relatively thick altered layers. Both iron-patches and zircon loose areas increase with the ZrSiO{sub}4 contents. The relationships among formulation, friction performance, and friction surfaces were summarized.
机译:评估了ZrSiO {sub} 4(硅酸锆或锆石)作为磨料对非金属制动摩擦材料的制动摩擦性能和摩擦层的影响。实验结果表明,ZrSiO {sub} 4提高了摩擦系数,但降低了磨损率。但是,ZrSiO {sub} 4可以提高摩擦材料的负磨损率。摩擦层的形成和发展是复杂的,因此使用扫描电子显微镜(SEM),光学显微镜(LM)和X射线衍射(XRD)方法仔细表征了在摩擦过程中形成的摩擦层。确定了摩擦层的以下特征-(1)动态行为:摩擦层的结构在不同的牺牲位置和整个样品厚度上发生变化; (2)摩擦条件的依赖性:摩擦层的形成取决于温度,时间和热过程,例如褪色和恢复; (3)成分依赖性:摩擦表面和松散的成分不同,但是松散的成分决定了摩擦层。观察到在摩擦表面上形成的重晶石膜,变质层,铁斑和锆石疏松区域的现象。在Zr-O(不含锆石的样品)的摩擦表面上检测到重晶石膜。重晶石膜对磨损性能有积极影响,但在ZrSiO {sub} 4存在的情况下该膜消失。含碳物质的含量随着ZrSiO {sub} 4的增加而减少。在Zr-O样品的摩擦表面上发现的蚀变层厚度可以忽略不计,而含锆石的样品则显示出相对较厚的蚀变层。 ZrSiO {sub} 4含量会增加铁斑和锆石疏松区。总结了配方,摩擦性能和摩擦表面之间的关系。

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