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Wear resistance of nano-polycrystalline diamond with various hexagonal diamond contents

机译:具有不同六角形金刚石含量的纳米多晶金刚石的耐磨性

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Wear resistance of nano-polycrystalline diamond (NPD) rods con taining various amounts of hexagonal diamond has been tested with a new method for practical evaluation of the wear-resistance rate of superhard ceramics, in addition to the measurements of their Knoop hardness. The wear resistance of NPD has been found to increase with increasing synthesis temperature and accordingly decreasing proportion of hexagonal diamond. A slight increase in Knoop hardness with the syn thesis temperature also has been observed for these samples, consistent with the results of the wear-resistance measurements. These results suggest that the presence of hexagonal diamond would not yield any observable increase in both hardness and wear resistance of NPD, contradictory to a recent prediction suggesting that hexagonal diamond is harder than cubic diamond. It is also demonstrated that NPD is superior to single crystal diamond in terms of relatively homogeneous wearing without any significant chipping/cracking.
机译:除了测量努氏硬度外,还使用一种新方法对包含多种六角形金刚石的纳米多晶金刚石(NPD)棒的耐磨性进行了实际评估超硬陶瓷的耐磨率的新方法。已经发现NPD的耐磨性随着合成温度的升高而增加,并且因此六角形金刚石的比例降低。对于这些样品,还观察到努氏硬度随合成温度的轻微升高,这与耐磨性测量的结果一致。这些结果表明,六角形金刚石的存在不会导致NPD硬度和耐磨性的任何可观察到的增加,这与最近的预测相反,后者表明六角形金刚石比立方金刚石更硬。还证明了NPD在相对均质的磨损方面没有任何明显的崩裂/裂纹方面优于单晶金刚石。

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