首页> 外文会议>International Federation for Heat Treatment and Surface Engineering Congress vol.2; 20041026-28; Shanghai(CN) >Effect of Pearlite Interlamellar Spacing on Predominant Abrasive Wear Mechanism of Fully Pearlitic Steel
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Effect of Pearlite Interlamellar Spacing on Predominant Abrasive Wear Mechanism of Fully Pearlitic Steel

机译:珠光体层间距对全珠光体钢主要磨粒磨损机理的影响

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The aim of this investigation was the determination of the predominant wear mechanism on three-body abrasion of fully pearlitic low alloy steel. Furthermore, the effect of pearlite interlamellar spacing on wear behavior was investigated. For this purpose, the samples were subjected to the different heat treating to attaining different interlamellar spacing. Mechanical properties such as hardness, yield strength, tensile strength, elongation, and impact toughness were evaluated. Three body abrasion tests were conducted under ASTM standard condition using a rubber wheel abrasion test apparatus. Abraded surface and wear debris were investigated by light optical microscopy and scanning electron microscopy. The results showed that wear resistance of fully pearlitic steel depended to pearlite interlamellar spacing the and lower spacing has the greater wear resistance, so it may be due to subsurface work hardening and interlamellar spacing and cementite in fine and/or coarse pearlite, that influence on surface destruction during wear. Although during wear process the several mechanisms play roles, but study of surface and debris shows that with decreasing interlamellar spacing, the predominant mechanism wear changed from ploughing to cutting mode.
机译:这项研究的目的是确定全珠光体低合金钢三体磨损的主要磨损机理。此外,研究了珠光体层间间距对磨损行为的影响。为此,使样品经受不同的热处理以获得不同的层间间距。评估了机械性能,例如硬度,屈服强度,拉伸强度,伸长率和冲击韧性。使用橡胶轮磨耗测试设备在ASTM标准条件下进行了三项磨耗测试。通过光学显微镜和扫描电子显微镜研究表面和磨损碎片的磨损情况。结果表明,全珠光体钢的耐磨性取决于珠光体的层间间距,而较低的间距具有较大的耐磨性,因此可能是由于表面加工硬化和层间间距以及细和/或粗珠光体中的渗碳体,对珠光体的影响较大。磨损过程中的表面破坏。尽管在磨损过程中有多种机制起作用,但是对表面和碎屑的研究表明,随着层间间距的减小,主要的磨损机制从犁耕方式变为切割方式。

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