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Wear behaviour of some low alloyed steels under combined impact/abrasion contact conditions

机译:某些低合金钢在冲击/磨损接触条件下的磨损行为

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The wear behaviour of some low alloyed steels has been investigated using a laboratory impeller-tumbler wear test equipment in which the steel samples are worn by angular granite particles under combined impact/abrasion wear contact conditions. The wear of the steels was evaluated by weight loss of the steel samples while the wear mechanisms of the steels were investigated by post-test light optical microscopy (LOM), scanning electron microscopy and energy dispersive X-ray analysis. The worn steel surfaces display a very rough surface topography with pronounced craters and distinct grooves caused by high and low angle impacts, i.e. abrasive wear, respectively. Besides, fragments of embedded granite particles are frequently observed in the worn surface of the steels. The wear of the steels tends to decrease with increasing steel hardness. However, instead of using the bulk hardness value the hardness of the worn/plastically deformed surface layer should be used when modelling the wear resistance. Further, the wear resistance of the steels was found to be dependent on the microstructure and chemical composition. Steels with similar type of microstructure show a linear decrease in weight loss with decreasing grain size and increasing carbon content.
机译:一些低合金钢的磨损行为已经使用实验室的叶轮-滚筒式磨损测试设备进行了研究,在该设备中,在冲击/磨耗组合的接触条件下,钢样品被角质花岗岩颗粒磨损。钢材的磨损通过样品的失重来评估,而钢材的磨损机理通过测试后的光学显微镜(LOM),扫描电子显微镜和能量色散X射线分析进行了研究。磨损的钢表面显示出非常粗糙的表面形貌,具有明显的凹陷和明显的凹槽,分别由高角度和低角度冲击(即磨料磨损)引起。此外,经常在钢的磨损表面观察到嵌入的花岗岩颗粒的碎片。钢的磨损倾向于随着钢硬度的增加而降低。但是,在对耐磨性进行建模时,应使用磨损/塑性变形的表面层的硬度,而不是使用总硬度值。此外,发现钢的耐磨性取决于显微组织和化学组成。具有相似显微组织类型的钢显示,随着晶粒尺寸的减小和碳含量的增加,重量损失呈线性下降。

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