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Dry Sliding Wear Studies of Copper-Based Powder Metallurgy Brake Materials

机译:铜基粉末冶金制动材料的干滑磨损研究

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摘要

The paper focuses on a novel friction material on Cu-based powder metal material. Several elements, such as Al, SiO2, Fe, graphite, Sn, Mn, and MoS2 were added to the Cu and were developed by PM techniques. The aim of the experiment was to study the effect of increasing Sintering temperature on mechanical and tribological characteristics of the novel train brake pads. The materials prepared were sintered at three different temperatures (850℃, 900℃, and 950℃). A high pressure pad-on-disk braking tester was developed to test the wear behavior of these materials without lubrication. Wear was measured by microscopic examination of the pad after the tribometer test. The tests showed that the coefficient of friction, wear rate and wear number were improved immensely by high temperature sintering. This means that, the level of the sintering temperature has significant effect on the performance of the braking material. Thereby, the tribological and the mechanical properties of the novel material were found to be temperature sensitive.
机译:本文重点研究一种基于铜基粉末金属材料的新型摩擦材料。几种元素(如Al,SiO2,Fe,石墨,Sn,Mn和MoS2)添加到Cu中,并通过PM技术进行了开发。实验的目的是研究提高烧结温度对新型列车制动片的机械和摩擦学特性的影响。所制备的材料在三种不同的温度(850℃,900℃和950℃)下烧结。开发了一种高压盘上制动测试仪,以测试这些材料在没有润滑的情况下的磨损行为。在摩擦计测试之后,通过显微镜检查垫来测量磨损。试验表明,高温烧结极大地提高了摩擦系数,磨损率和磨损次数。这意味着,烧结温度的水平对制动材料的性能具有显着影响。因此,发现该新型材料的摩擦学和机械性能对温度敏感。

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