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Development of a rubber-coated mineral fiber for disc pad applications

机译:用于盘垫应用的橡胶涂层矿物纤维的研制

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The objective of the described work was to develop a new type of mineral fiber that gives improved properties in disc pad applications. The main improvements that were targeted for are wear resistance, structural properties and friction stability. The method of working was first to develop several unique types of fiber by coating them with different types of binder, i.e., phenolic resin or rubber. These developmental materials were then screened for bonding strength with phenolic resin by testing them on mechanical properties in a composite material, consisting of mineral fiber and phenolic resin. After preselection through this test method, the best types are tested in two different model disc pad formulations on frictional properties and wear resistance and compared with current state-of-the-art mineral fiber products. From these results, which will be incorporated in the appendices of the article, the conclusion can be drawn that rubber-coated mineral fiber as well as resin-coated mineral fiber give improved structural properties, higher wear resistance and better friction stability in disc pad materials.
机译:所描述的作品的目的是开发一种新型矿物纤维,可在盘焊盘应用中提供改进的性能。靶向的主要改进是耐磨性,结构性和摩擦稳定性。通过用不同类型的粘合剂,即酚醛树脂或橡胶涂覆它们,首先工作方法首先是开发几种独特的纤维。然后通过在复合材料中的机械性能上测试酚醛树脂,将这些发育材料筛选用于粘合强度,由矿物纤维和酚醛树脂组成。通过该测试方法预选后,在两种不同的模型盘焊盘配方中测试了最佳类型,用于摩擦性能和耐磨性,并与当前的最先进的矿物纤维产品相比。从这些结果中,该结果将被纳入本文的附录中,可以绘制结论,即橡胶涂覆的矿物纤维以及树脂涂覆的矿物纤维可提高结构性,耐磨性更高,圆盘垫材料中更好的摩擦稳定性。

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