论文标题

级联晶体学转换和元素锆的熔点

Cascading crystallographic transitions and melting curve of elemental zirconium

论文作者

Gal, Joseph

论文摘要

针对每个已识别的晶体学相,欧米茄,β元素和β双质质量分别分析的实验数据的精确拟合,与文献所声称的那些相比,与文献中所声称的那些相比,bo prime和bo prime和不同的零压力体积(VO)不同。特别注意BCC阶段,表明级联的过渡到Beta Prime到Beta双质量与体积崩溃相关。目前的分析揭示了BCC-Beta Prime阶段的存在,该阶段首次在此报告。结果表明,在约58GPA Beta到Beta Prime的一阶体积崩溃之后,随后是中等转变,向BCC-Beta双重序相。 Beta Prime阶段的稳定性高达110GPA。 BCC-Beta双重质量在110GPA以上是主导的,稳定性高达约220GPA。 Lindemann-Gilvarry标准证实了派生的BCC双质体大量模量,因为BO和BO Prime同时拟合了P-V EOS和P-T熔化数据点(合并方法)。元素ZR的计算熔点曲线考虑了POTH的热压POTH偏移和升高的TMO Prime的升高,可以很好地拟合实验性熔化数据,从而使安全外推到高压和温度。此外,合并的方法导致直接确定应用近似Lindemann-Gilvarry熔解公式所需的Greuneisen参数伽马。

Precise fitting of the experimental data analyzed separately for each identified crystallographic phase alpha, omega, beta, beta prime and beta double prime yield different bulk moduli Bo and Bo prime and different zero pressure volumes (Vo) than those claimed in the literature. Special attention is given to the bcc phases indicating cascading transitions beta to beta prime to beta double prime associated with volume collapse. The present analysis reveals the existence of a bcc-beta prime phase which is reported here for the first time. It is shown that the first order volume collapse at about 58GPa beta to beta prime is followed by a moderate transition to the bcc-beta double prime phase. The beta prime phase is stable up to 110GPa. Above 110GPa the bcc-beta double prime is dominant and stable up to about 220GPa. The derived bcc-double prime bulk moduli are confirmed by the Lindemann-Gilvarry criterion as Bo and Bo prime simultaneously fit both the P-V EOS and the P-T melting data points (combined approach). The calculated melting curve of elemental Zr, taking into account the thermal pressure Poth shift and the elevated melting Tmo prime at Poth , yield very good fit of the experimental melting data permitting a safe extrapolation to high pressures and temperatures. In addition, the combined approach lead to direct determination of the Greuneisen parameter gammao, needed for applying the approximated Lindemann-Gilvarry melting formula.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源