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Evaluation of the tribological properties of an Al-Mg-Si alloy processed by severe plastic deformation

机译:严重塑性变形处理的Al-Mg-Si合金的摩擦学性能评估

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摘要

Aluminum alloys are widely used as structural materials in various types of applications due to light weight, excellent strength, corrosion resistance, formability. However, problems may arise in those applications that require high wear resistance. With the aim to study the effect of the severe plastic deformation on the tribological properties in an aluminum alloy; in this work a commercial Al-Mg-Si alloy under two initial microstructural conditions has been deformed at room temperature by multi-pass 90° equal channel angular pressing (ECAP). After the processing each sample was evaluated by means of microhardness measurements and the microstructural condition was determinate by electron microscopy. Subsequently sliding wear test was performed in a ball on disk configuration under lubricated conditions. It was found a wear resistance increase with the rise in the deformation promoted by number of extrusion passes and the initial microstructural condition. The dominant wear mechanisms were identified and correlated with mechanical properties, microstructure and the level of deformation.
机译:铝合金由于重量轻,强度高,耐腐蚀,可成形性而被广泛用作各种类型的结构材料。但是,在那些要求高耐磨性的应用中可能会出现问题。目的是研究严重塑性变形对铝合金摩擦学性能的影响;在这项工作中,商品化的Al-Mg-Si合金在两个初始微观结构条件下已在室温下通过多道90°等通道角挤压(ECAP)变形。处理后,通过显微硬度测量评估每个样品,并通过电子显微镜确定显微结构条件。随后,在润滑条件下,以圆盘形式的球进行了滑动磨损测试。已经发现,随着挤压次数的增加和初始微观结构条件的促进,随着变形量的增加,耐磨性增加。确定了主要的磨损机制,并将其与机械性能,微观结构和变形水平相关。

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