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Friction Stir Processing for Enhancement of Wear Resistance of ZM21 Magnesium Alloy

机译:搅拌摩擦加工以提高ZM21镁合金的耐磨性

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Present work pertains to surface modification of the magnesium alloy using friction stir processing (FSP). Silicon carbide and boron carbide powders are used in the friction stir processing of the ZM21 Magnesium alloy. Coating was formed by FSP of the alloy by placing the carbide powders into the holes made on the surface. Surface coating was characterized by metallography, hardness and pin-on-disc testing. Friction stir processed coating exhibited excellent wear resistance and is attributed to grain boundary pinning and dispersion hardening caused by carbide particles. Surface composite coating with boron carbide was found to possess better wear resistance than coating made with silicon carbide. This may be attributed to formation of very hard layer coating of boron carbide reinforced composite on the surface of magnesium alloy. In the present work an attempt has also been made to compare the wear behaviour of surface composite layer on ZM21 Mg alloy with that of conventionally used engineering materials such as mild steel and austenitic stainless steel. Wear data clearly shows that wear resistance of friction stir processed composite layer is better than that of mild steel and stainless steel. This work demonstrates that friction stir processing is an effective strategy for enhancement of wear resistance of magnesium alloys.
机译:当前的工作涉及使用摩擦搅拌处理(FSP)对镁合金进行表面改性。 ZM21镁合金的摩擦搅拌过程中使用碳化硅和碳化硼粉末。通过将硬质合金粉末放入表面上的孔中,通过FSP合金形成涂层。表面涂层通过金相,硬度和圆盘测试进行表征。搅拌摩擦处理的涂层具有出色的耐磨性,归因于碳化物颗粒引起的晶界钉扎和分散硬化。发现具有碳化硼的表面复合涂层具有比由碳化硅制成的涂层更好的耐磨性。这可能是由于在镁合金表面形成了碳化硼增强复合材料的非常硬的涂层。在本工作中,还尝试将ZM21 Mg合金上的表面复合层与常规使用的工程材料(例如低碳钢和奥氏体不锈钢)的磨损行为进行比较。磨损数据清楚地表明,搅拌摩擦加工的复合层的耐磨性优于低碳钢和不锈钢。这项工作表明,搅拌摩擦加工是提高镁合金耐磨性的有效策略。

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