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首页> 外文期刊>Physica, B. Condensed Matter >Thermally induced defects in a polycrystalline diamond layer on a tungsten carbide substrate
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Thermally induced defects in a polycrystalline diamond layer on a tungsten carbide substrate

机译:碳化钨衬底上的多晶金刚石层中的热致缺陷

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In this study we make use of laser heating of HTHP industrial diamond, to study temperature induced changes to the diamond structure, both chemically and mechanically, in the absence of mechanical forces. This has relevance to the efficacy of diamond as a hard material in such applications as rock drilling and material processing. We report on the induced defects when the diamond is irradiated with high power CO2 and Nd:YAG lasers respectively, and show that the thermal induced stresses in the diamond are sufficient to radically alter its physical properties, resulting in critical fracture. Raman spectroscopy, X-ray diffraction and scanning electron microscopy indicate that the heating does not result in graphitisation of the diamond, but rather diffusion from the non-diamond base results in cobalt and tungsten oxides forming on the diamond surface. This has a deleterious effect on the diamond performance.
机译:在这项研究中,我们利用HTHP工业金刚石的激光加热,研究了在没有机械力的情况下温度引起的化学结构和机械结构变化。这与在凿岩和材料加工等应用中金刚石作为硬质材料的功效有关。我们分别报道了用大功率CO2和Nd:YAG激光照射金刚石时产生的缺陷,并显示出金刚石中的热诱导应力足以从根本上改变其物理性质,从而导致严重断裂。拉曼光谱,X射线衍射和扫描电子显微镜表明,加热不会导致金刚石的石墨化,而是从非金刚石基底的扩散会导致在金刚石表面上形成钴和钨的氧化物。这对金刚石性能具有有害影响。

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