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A study of the cutting performance of poly-crystalline oxygen free copper with single crystalline diamond micro-tools

机译:用单晶金刚石微型刀具研究多晶无氧铜的切削性能

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摘要

A study was carried out to investigate the crystallographic effects on the performance of cutting polycrystalline oxygen free copper C10200 (OFC) with single crystalline diamond (SCD) micro-tools. At both large cutting depth and cross-feed rate, as the micro-tool traversed a grain with a crystallographic orientation less favorable for a stable machining process, the work material in front of the rake face was found to be severely deformed. This may lead to a reduced shear angle, thick chip, striation at the back of the chip, high cutting forces, degraded machined surface and the possibility of burr formation. The results showed minimal variations in the machined surface integrity and cutting forces compared to cut amorphous NiP plating with micro-tools. For a high cutting depth, burrs were also observed due to material deformation and pile-up occurring at the groove edges since the localized stress probably built up in front of the rake face. Cutting strategies were demonstrated to improve the performance of cutting OFC with micro-tools and to generate high aspect ratio micro-pillar arrays.
机译:进行了一项研究,以研究晶体学对单晶金刚石(SCD)微型刀具切割多晶无氧铜C10200(OFC)性能的影响。在较大的切削深度和横向进给速度下,由于微型刀具横切了具有不利于稳定加工过程的晶体取向的晶粒,因此发现前刀面前的工作材料严重变形。这可能会导致剪切角减小,切屑变厚,切屑背面出现条纹,高切削力,加工表面退化以及形成毛刺的可能性。结果表明,与使用微型工具切割的无定形NiP镀层相比,加工后的表面完整性和切割力的变化很小。对于高切削深度,由于材料变形和在凹槽边缘处发生堆积,还观察到毛刺,因为局部应力可能在前刀面的前面累积。切割策略已被证明可以改善使用微型工具切割OFC的性能并生成高纵横比的微型柱阵列。

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