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Dry turning of alumina/aluminum composites with CVD diamond coated Co-cemented tungsten carbide tools

机译:用CVD金刚石涂覆的硬质合金碳化钨工具对氧化铝/铝复合材料进行干车削

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摘要

Triangular (TPGN 160308) WC-6 wt.%Co inserts having different average grain sizes (1 and 3 µm) were submitted to surface roughening either by wet etching with Murakami's reagent or by a heat treatment in the hot filament chemical vapour deposition (HFCVD) reactor. The heat treatment was performed in a monohydrogen-rich atmosphere at substrate temperatures as high as 1000 degrees C. Scanning electron microscopy and energy-dispersive spectroscopy showed that this pre-treatment led to surface roughening of the as-ground inserts and to a lower surface Co concentration. Prior to deposition, all inserts were etched with an acid solution of hydrogen peroxide. Diamond coatings were deposited by HFCVD. The coated inserts were tested by dry machining of aluminum-matrix composite (Al-10%Al2O3) bars. Turning test results indicated that a proper combination of substrate pretreatment and microstructure can significantly improve tool life.
机译:通过使用村上试剂湿法蚀刻或通过热丝化学气相沉积(HFCVD)中的热处理,对具有不同平均晶粒尺寸(1和3 µm)的三角形(TPGN 160308)WC-6 wt。%Co刀片进行表面粗化处理)反应堆。热处理是在衬底温度高达1000摄氏度的富含氢的气氛中进行的。扫描电子显微镜和能谱分析表明,这种预处理导致被磨削刀片的表面变粗糙并导致其下表面钴浓度。在沉积之前,所有插件都用过氧化氢的酸性溶液蚀刻。通过HFCVD沉积金刚石涂层。通过对铝基复合材料(Al-10%Al2O3)棒进行干式加工来测试涂层的插件。车削测试结果表明,基板预处理和微观结构的适当组合可以显着提高刀具寿命。

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