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Progress to electrical properties of diamond-SiC composites under high pressure and high temperature

机译:高压高温下金刚石复合材料的电气性能研究

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摘要

Polycrystalline diamond in the presence of silicon with different sintering times was investigated under high pressure and high temperature of 5.0 GPa and 1400 degrees C, respectively, using a multi-anvil apparatus. In this research, phase analysis demonstrated that the content of SiC increased and the amount of Si decreased clearly with the sintering time extending by X-ray diffraction (XRD). The characterization of the sintered body demonstrated that the electrical resistance decreased as the reaction time rose. Specimens with good conductivity of 17 Omega.cm(-1) sintered for 20 min at 1400 degrees C under 5.0 GPa were successfully obtained. The measured Vickers hardness and thermal stability of the synthesized diamond-SiC composites in the present study were > 40 GPa and 1450 K, respectively.
机译:使用多铁杆装置,在高压和高温下,在高压和高温下,在具有不同烧结时间的情况下在具有不同烧结时间的情况下进行多晶金刚石。 在该研究中,相分析证明了SiC的含量增加,并且Si的量随着X射线衍射(XRD)延伸的烧结时间明显地降低。 烧结体的表征证明,随着反应时间升高,电阻降低。 成功地获得了5.0GPa下的17℃烧结20分钟的良好导电率为17ωCM(-1)的试样。 本研究中合成的金刚石复合材料的测量维氏硬度和热稳定性分别为> 40GPa和1450k。

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