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Vacuum tribological properties and impact toughness of polycrystalline diamond based on titanium-coated diamond particle

机译:基于钛涂层金刚石颗粒的多晶金刚石的真空摩擦学性质和冲击韧性

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摘要

In this work, the diamond particles were deposited with titanium (Ti) by the magnetron sputtering, and the polycrystalline diamond compact synthesized by the Ti-coated diamond particles (Ti-PDC) was prepared by high temperature and high pressure (HTHP) sintering method. The scanning electron microscope (SEM) and energy dispersive spectrometer (EDS) results show that the Ti coating uniformly distributes on the surface of diamond particles. The results of X-ray diffraction (XRD) indicate that the TiC phase has been produced during the sintering process. The impact toughness of the Ti-PDC is higher than that of the pristine polycrystalline diamond compact (P-PDC). In addition, the friction coefficients of Ti-PDC under different vacuum conditions reveal lower values than those of the P-PDC. A less number of exfoliated pits can be observed on the worn Ti-PDC surface. The improved impact toughness and vacuum friction performance of Ti-PDC may be attributed to the enhanced bonding strength between diamond particles, which is induced by the TiC phase. In brief, the Ti -coated diamond particles can improve the bonding strength between diamond grains and thus yield to an enhanced service performance of the PDC.
机译:在这项工作中,通过磁控溅射用钛(Ti)沉积金刚石颗粒,通过高温和高压(HTHP)烧结法制备通过Ti涂覆的金刚石颗粒(Ti-PDC)合成的多晶金刚石结构。扫描电子显微镜(SEM)和能量分散光谱仪(EDS)结果表明,Ti涂层均匀地分布在金刚石颗粒的表面上。 X射线衍射(XRD)的结果表明,在烧结过程中已经产生了TIC相。 Ti-PDC的冲击韧性高于原始多晶金刚石压块(P-PDC)的韧性。另外,在不同真空条件下Ti-PDC的摩擦系数揭示了比P-PDC的较低值。在磨损的Ti-PDC表面上可以观察到少量的剥离凹坑。 Ti-PDC的改善的冲击韧性和真空摩擦性能可以归因于通过TIC相诱导的金刚石颗粒之间的增强粘接强度。简而言之,Ti涂料的金刚石颗粒可以提高金刚石晶粒之间的粘合强度,从而提高PDC的增强的服务性能。

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