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Friction and Wear Property of Copper Alloys for Plain Bearing

机译:滑动轴承用铜合金的摩擦磨损性能

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Copper alloys have been used for plain bearing material in many kinds of engineering machines. In this study typical copper alloys are selected from the view point of strength and thermal conductivity that is proportional to electric conductivity. The aim of this study is to investigate that the thermal conductivity is very important character to keep mild friction with appropriate condition of block-on-ring tests. The results show that the patterns of friction coefficient of time are classified into four types. Type I is stable in low friction. Type II is slightly up in the end part. Type III is less stable and up to 0.4 level of friction coefficient (μ ). Type IV is rough waving in more over 0.4 level of friction coefficient (μ ). The materials of Type I are chromium copper alloy and Corson copper alloy. The Type II is beryllium copper alloy. These Type I & II alloys have the same properties of high thermal conductivity and characteristic microstructure of dispersed hard particles in copper matrix. High thermal conductivity reveals good tribological performance, i. e., low friction and wear. Moreover after tribological test, the surface of these alloys changes and transformes to rich oxide surface with condensed hard particles. It’s action is simple application of friction steps to escape the severe wear. Especially the copper alloy with ferrous particles dispersed in matrix makes severe mode of friction by the same element of friction.
机译:铜合金已在许多工程机械中用作滑动轴承材料。在本研究中,从强度和与电导率成比例的热导率的角度选择典型的铜合金。这项研究的目的是研究热导率对于在适当的环上试块条件下保持轻度摩擦是非常重要的特性。结果表明,时间摩擦系数的模式可分为四种类型。 I型在低摩擦下稳定。 II型在末端略微向上。 III型不稳定,摩擦系数(i)最高可达0.4。 IV型在超过0.4级的摩擦系数(i)时起伏不定。 I型材料是铬铜合金和Corson铜合金。 II型是铍铜合金。这些I和II型合金具有相同的高导热性和在铜基体中分散的硬质颗粒的特征微观结构。高导热率显示出良好的摩擦学性能,即例如,低摩擦和磨损。此外,经过摩擦学测试,这些合金的表面发生变化,并转变为具有凝结的硬质颗粒的富氧化物表面。它的作用是简单地应用摩擦步骤来避免严重磨损。尤其是,含铁颗粒分散在基体中的铜合金会由于相同的摩擦元素而产生严重的摩擦模式。

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