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Equation of state and high-pressure/high-temperature phase diagram of magnesium

机译:镁的状态方程和高压/高温相图

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摘要

The phase diagram of magnesium has been investigated to 211 GPa at 300 K, and to 105 GPa at 4500 K, by using a combination of x-ray diffraction and resistive and laser heating. The ambient pressure hcp structure is found to start transforming to the bcc structure at ∼45 GPa, with a large region of phase-coexistence that becomes smaller at higher temperatures. The bcc phase is stable to the highest pressures reached. The hcp-bcc phase boundary has been studied on both compression and decompression, and its slope is found to be negative and steeper than calculations have previously predicted. The laser-heating studies extend the melting curve of magnesium to 105 GPa and suggest that, at the highest pressures, the melting temperature increases more rapidly with pressure than previously reported. Finally, we observe some evidence of a new phase in the region of 10 GPa and 1200 K, where previous studies have reported a double-hexagonal-close-packed (dhcp) phase. However, the additional diffraction peaks we observe cannot be accounted for by the dhcp phase alone.
机译:通过使用X射线衍射以及电阻加热和激光加热的组合,已经研究了镁在300 K下的相图至211 GPa和在4500 K下的105 GPa。发现环境压力hcp结构在〜45 GPa时开始转变为bcc结构,相共存的区域很大,在较高温度下会变小。 bcc相对于达到的最高压力是稳定的。已经对hcp-bcc相界进行了压缩和解压缩研究,发现其斜率比以前的预测为负且陡峭。激光加热研究将镁的熔融曲线扩展至105 GPa,并表明,在最高压力下,熔融温度随压力的升高比以前报道的更快。最后,我们观察到一些证据表明在10 GPa和1200 K范围内出现了一个新相,以前的研究已经报道了一个双六角密堆积(dhcp)相。但是,我们观察到的其他衍射峰不能仅由dhcp相解释。

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