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Diamond coatings for micro end mills: Enabling the dry machining of aluminum at the micro-scale

机译:微型立铣刀的金刚石涂层:能够在微米级上对铝进行干式加工

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摘要

We show that thin diamond coatings can dramatically enhance the performance of micrometer-scale cutting tools. We present a new approach for coating 300 urn diameter tungsten carbide (WC) micro end mills using a tailored seeding method and hot filament chemical vapor deposition (HFCVD) to obtain uniform, conformal, and continuous diamond coatings less than 2 mu m in both thickness and grain size. The performance of the uncoated and coated tools has been evaluated by dry machining channels in 6061-T6 aluminum. The test results demonstrate far lower tool wear and breakage, much lower adhesion of aluminum to the tool, and significantly lower cutting forces for the coated tools. The coatings achieve a more predictable surface finish and enable dry machining at high speeds (40,000 rpm) with little or no burr formation. The improved performance of the coated tools is a result of the superior tribological properties of fine-grained diamond against aluminum, specifically low friction, low adhesion, and low wear of the film. Since the coating allows machining without lubricants and essentially eliminates metal burrs, this approach can reduce the environmental impact of micro-machining processes and offers greatly improved performance for micro and meso-scale manufacturing applications.
机译:我们表明,薄金刚石涂层可以显着提高微米级切削工具的性能。我们提出了一种新方法,该方法使用量身定制的播种方法和热丝化学气相沉积(HFCVD)来涂覆300微米直径的碳化钨(WC)微型立铣刀,以获得厚度均小于2微米的均匀,共形和连续的金刚石涂层和晶粒尺寸。未涂层和涂层工具的性能已通过6061-T6铝的干式加工通道进行了评估。测试结果表明,刀具的磨损和破损要低得多,铝对刀具的附着力要低得多,涂层刀具的切削力要低得多。涂层可实现更可预测的表面光洁度,并能够在几乎没有毛刺的情况下以高速(40,000 rpm)进行干式加工。涂层工具性能的提高是由于细粒金刚石相对于铝具有优异的摩擦学性能,尤其是低摩擦,低附着力和低膜磨损。由于涂层允许在不使用润滑剂的情况下进行机加工,并且基本上消除了金属毛刺,因此该方法可以减少微加工工艺对环境的影响,并为微尺度和中尺度的制造应用提供大大改善的性能。

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