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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Influence of the reactive mixture density on the diamond yield from a synthetic process
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Influence of the reactive mixture density on the diamond yield from a synthetic process

机译:反应混合物密度对合成工艺中金刚石产量的影响

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The yield of a diamond synthesis process using high-pressure and high-temperature transformation of graphite in the presence of a catalyst/solvent metal depends basically on three parameters: time, temperature and pressure. However, to attain specific values for the pressure inside the reaction cell it is necessary to have a certain density for the graphite-metal reactive mixture. In the present work evidences for the influence of the reactive mixture density on the diamond yield and the crystal granulometry are presented. These evidences were obtained by changing the density of reactive mixtures composed of equal amounts of graphite and a Ni-Mn catalyst/solvent alloy. The synthesis process was carried out at a pressure of 4.7 GPa and a temperature of 1250 deg C. It has been observed that the reactive mixture density must vary within fixed limits. Outside those limits the diamond yield will be relatively lower or crystal formation may be inhibited.
机译:在催化剂/溶剂金属的存在下使用石墨的高压和高温转化的金刚石合成方法的产率基本上取决于三个参数:时间,温度和压力。但是,为了获得反应池内部压力的特定值,必须使石墨-金属反应混合物具有一定的密度。在本工作中,提出了反应混合物密度对金刚石产率和晶体粒度的影响的证据。这些证据是通过改变由等量的石墨和Ni-Mn催化剂/溶剂合金组成的反应混合物的密度而获得的。合成过程在4.7 GPa的压力和1250℃的温度下进行。已经观察到,反应混合物的密度必须在固定的极限内变化。在这些限制之外,金刚石的产率将相对较低,或者晶体的形成可能受到抑制。

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