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Friction and Wear Behavior of a Centrifugally Cast Lead-Free Copper Alloy Containing Graphite Particles

机译:离心铸造含石墨颗粒的无铅铜合金的摩擦磨损性能

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The tribological properties of a centrifugally cast lead-free copper alloy (C90300), containing an average of 13 vol pct graphite particles (5 #mu#m), have been studied. Friction tests were carried out at three different loads of 44, 88, and 176 N using a pin-on-disk testing method for the base copper alloy and the copper-graphite composite against a 1045 steel disk counterface. The friction coefficient, temperature rise, and weight loss of the pin and disk were measured. To understand the wear mechanism, the wear debris and the surfaces of the pin and the disk were analyzed before and after the tests, using scanning electron microscope (SEM) and energy-dispersive X-ray (EDX) analysis. The friction coefficient of the copper-graphite pins was lower than that of the base-alloy pins for all applied loads, which was attributed to the presence of the graphite in the matrix. It was also observed that the presence of graphite in the matrix reduces the transfer of iron from the counterface to the pins, but enhances the transfer of materials from the pins to the counterface. The temperature rise in the counterface running against the base-alloy pins was larger than the temperature rise in the counterface running against the copper-graphite pins, both tested under similar conditions. In addition, the effect of element transfer on the friction coefficient, variations in the weight of the pins and the counterface, as well as the surface roughness, are attributed to the formation of a graphitic tribolayer on the surface of the copper-graphite pins. An isostrain model predicting the friction coefficient of the composites is proposed, which agrees well with the measurements in the present article as well as with measurements made by other investigators.~(10)
机译:研究了平均含有13个体积pct石墨颗粒(5#μm)的离心铸造无铅铜合金(C90300)的摩擦学性能。使用销盘测试方法对基础铜合金和铜-石墨复合材料抵靠1045钢盘的对接面,在44、88和176 N的三种不同载荷下进行了摩擦测试。测量了销和盘的摩擦系数,温度升高以及重量损失。为了了解磨损机理,在测试前后,使用扫描电子显微镜(SEM)和能量色散X射线(EDX)分析了磨损碎片以及销和磁盘的表面。在所有施加的负载下,铜-石墨销的摩擦系数均低于基础合金销的摩擦系数,这归因于基体中存在石墨。还观察到,基体中石墨的存在减少了铁从对置面到销的转移,但增强了材料从销到对面的转移。分别在相似条件下进行测试,与基础合金引脚相对的对接面的温度升高大于与铜石墨引脚相对的对接面的温度升高。另外,元素转移对摩擦系数,销和对接面的重量变化以及表面粗糙度的影响归因于在铜-石墨销的表面上形成石墨摩擦层。提出了一种预测复合材料摩擦系数的等应变模型,该模型与本文中的测量以及其他研究者的测量非常吻合。(10)

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