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On cutting mechanisms during nano machining of metals

机译:关于金属纳米加工中的切削机理

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The paper investigates the effect of depth of cut on the cutting mechanism for two commonly used coated materials, namely, Copper and Nickel, during nano machining operations. A nano indenter equipped with a nano scratching attachment was used for the nano machining operations and in situ observations of the machined surface. Plastic deformation of the material leads to pile up volume that occurrs along the scratch length. This pile up volume was utilized to distinguish between the ploughing and cutting type of abrasive wear mechanisms of the coated materials. It was found that the relationship between the depth of cut and the cutting tool tip radius governs the cutting mechanism significantly. The ploughing mechanism was responsible for generation of the nano scale groove when the depth of cut was smaller than the cutting tool tip radius. Otherwise both the cutting mechanism and ploughing mechanism were the contributing modes of abrasive wear for producing the nano scale groove.
机译:本文研究了切削深度对纳米加工操作中两种常用涂层材料(铜和镍)切削机理的影响。配备有纳米划痕附件的纳米压头用于纳米加工操作和加工表面的原位观察。材料的塑性变形会导致沿着刮擦长度出现堆积体积。利用该堆积体积来区分涂层材料的犁磨类型和切割类型的磨料磨损机理。发现切削深度与切削刀具刀尖半径之间的关系显着决定了切削机理。当切削深度小于切削刀具刀尖半径时,犁刀机构负责产生纳米级凹槽。否则,切割机构和耕作机构都是产生纳米级凹槽的磨料磨损的贡献方式。

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