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Tribological Properties of Bronze Containing Micro Sized Sulfide -Application of Atomic Force Microscopy-

机译:含铜微型硫化物的摩擦学特性-原子力显微镜的应用-

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The present study describes the tribological properties of a bronze alloy used as a sliding interface for operation under dry conditions. Many industrial slide bearings are made from bronze alloy. To achieve easy running-in and enhanced anti-seizure, solid lubricants are added to the alloys. However, it is difficult to simultaneously achieve easy running-in and anti-seizure with one solid lubricant. Thus, the combined effects of a solid lubricant and a dispersed sulfide layer on reducing and stabilizing the friction coefficient were also examined. The tribological properties of the resulting alloy were evaluated with a 3-ball on disc type testing apparatus under dry conditions and in air atmosphere. The surface state of the solid lubricant and dispersed sulfide layer was evaluated by observation of the morphology and phase states via atomic force microscopy. Distinctive features of a phase comprising mixed stiff and soft regular regions on the micrometer scale were observed. These two regular regions are considered to be formed from graphite and sulfide by burnishing. The effect of the dual phase state leads to achievement of both easy running-in and anti-seizure.
机译:本研究描述了用作干燥条件下的滑动界面的青铜合金的摩擦学性能。许多工业滑动轴承是由青铜合金制成的。为了实现方便的磨合和增强的抗咬合性,向合金中添加了固体润滑剂。但是,用一种固体润滑剂难以同时实现容易的磨合和防卡死。因此,还检验了固体润滑剂和分散的硫化物层对降低和稳定摩擦系数的综合作用。在圆盘式测试设备上,在干燥条件下和空气中,用3-球评估所得合金的摩擦学性能。通过原子力显微镜通过观察形态和相态来评估固体润滑剂和分散的硫化物层的表面状态。在微米尺度上观察到包含刚性和软规则区域混合的相的显着特征。这两个规则区域被认为是由石墨和硫化物通过抛光形成的。双相态的作用导致易于磨合和抗咬合。

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