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Characterization of Deformation and Wear Mechanisms During Indentation Scratching on Pure Zinc

机译:纯锌对压痕磨损机制的特征

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摘要

Scratch testing using nanoindentation helps to characterize material's wear resistance and the accompanying material removal, and deformation mechanism. The effect of load and repeated scratching on pure zinc was investigated in this study. Surface examination post scratching revealed the formation of long chips at lower loads, which can be attributed to ductile-like behavior. Ploughing dominated at higher loads, while micro-cutting was active at lower loads. The material removal factor (f(ab)) is an indicator of the prevailing wear mechanism. A good correlation appeared between the observed wear mechanism and the calculated fab, wherein interplay of ploughing and micro-cutting was observed. The decrease in wear rate as the number of passes increased and the decreasing value of fab are indicative of the strain hardening behavior during repeated scratching. The presence of intergranular fracture slip and twinning on the deformed surface is indicative of the material's response to induced stress.
机译:使用纳米茚处理的划痕测试有助于表征材料的耐磨性和伴随材料去除和变形机制。在本研究中研究了载荷和重复刮擦对纯锌的影响。表面检查术后划伤显示,在较低载荷下形成长碎片,其可以归因于延性的行为。犁在载荷较高的较高负载下,微切在较低负载下活跃。材料去除因子(F(AB))是普遍磨损机构的指示。观察到的磨损机构和计算的Fab之间出现了良好的相关性,其中观察到耕作和微切切割的相互作用。随着通过的次数的数量增加并且FAB的降低值的磨损率的降低指示重复划痕期间应变硬化行为。在变形表面上存在晶间骨折滑动和孪生,表示材料对诱导应力的反应。

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