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首页> 外文期刊>Journal of Materials Engineering and Performance >Wear Performance of Cu-Alloyed Austempered Ductile Iron
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Wear Performance of Cu-Alloyed Austempered Ductile Iron

机译:铜合金奥氏体球墨铸铁的磨损性能

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An investigation was carried out to examine the influence of structural and mechanical properties on wear behavior of austempered ductile iron (ADI). Ductile iron (DI) samples were austenitized at 900℃ for 60 min and subsequently austempered for 60 min at three temperatures: 270, 330, and 380℃. Microstructures of the as-cast DI and ADIs were characterized using optical and scanning microscopy, respectively. The structural parameters, volume fraction of austenite, carbon content of austenite, and ferrite particle size were determined using x-ray diffraction technique. Mechanical properties including Vicker's hardness, 0.2% proof strength, ultimate tensile strength, ductility, and strain hardening coefficient were determined. Wear tests were carried out under dry sliding conditions using pin-on-disk machine with a linear speed of 2.4 m/s. Normal load and sliding distance were 45 N and 1.7 × 10~4 m, respectively. ADI developed at higher austempering temperature has large amounts of austenite, which contribute toward improvement in the wear resistance through stress-induced martensitic transformation, and strain hardening of austenite. Wear rate was found to depend on 0.2% proof strength, ductility, austenite content, and its carbon content. Study of worn surfaces and nature of wear debris revealed that the fine ausferrite structure in ADIs undergoes oxidational wear, but the coarse ausferrite structure undergoes adhesion, delamination, and mild abrasion too.
机译:进行了调查,以研究结构和机械性能对奥氏体球墨铸铁(ADI)磨损行为的影响。球墨铸铁(DI)样品在900℃下奥氏体化60分钟,然后在270、330和380℃这三个温度下奥氏体60分钟。分别使用光学显微镜和扫描显微镜对铸态DI和ADI的微观结构进行了表征。使用X射线衍射技术确定结构参数,奥氏体的体积分数,奥氏体的碳含量和铁素体粒径。确定了包括维氏硬度,0.2%极限强度,极限抗拉强度,延展性和应变硬化系数在内的机械性能。磨损试验是在干式滑动条件下,使用销钉磁盘机以2.4 m / s的线性速度进行的。正常载荷和滑动距离分别为45 N和1.7×10〜4 m。在较高的奥氏体化温度下开发的ADI具有大量的奥氏体,这有助于通过应力诱发的马氏体相变和奥氏体的应变硬化来改善耐磨性。发现磨损率取决于0.2%的屈服强度,延展性,奥氏体含量及其碳含量。对磨损表面和磨损碎片性质的研究表明,ADIs中的细奥氏体结构经历了氧化磨损,而粗奥氏体结构也经历了粘附,分层和轻度磨损。

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