在高压下立方体碳化状态的热方程
Artem Chanyshev1, Naira Martirosyan1, Lin Wang1
1Bayerisches Geoinstitut, University of Bayreuth, Universitätsstraße 30, 95447, Bayreuth, German.
概括
这项研究测量了在极端条件下立方碳化 (SiC) 的性能. 我们确定了它的热弹性参数,并验证了SiC-MgO混合物,用于同时进行压力和温度校准.
科学领域:
- 材料科学 材料科学 材料科学
- 地质物理学 地质物理学
- 高压物理 高压物理
背景情况:
- 具有混合结构 (B3) 的立方碳化 (SiC) 对于高压研究至关重要.
- 需要精确的热弹性参数来理解在极端条件下材料的行为.
研究的目的:
- 在高压和高温下确定B3-SiC的热弹性参数.
- 评估B3-SiC - MgO混合物作为同时压力和温度校准剂的适用性.
主要方法:
- 在现场进行X射线衍射测量,使用多杆装置.
- 采用了第三阶的伯奇-穆尔纳根状态方程和米-格鲁尼森-德拜模型.
- 分析了压缩曲线和热膨胀.
主要成果:
- 确定了B3-SiC的关键热弹性参数:同热散体模量 (K0),其压力导数 (K0'),以及格鲁尼森参数 (q) 的对数体积依赖.
- 还计算了热膨胀系数 (α0).
- 配对的B3-SiC - MgO校准仪被证明是有效的同时压力和温度估计高达60GPa.
结论:
- 确定的热弹性参数为B3-SiC在极端条件下提供了有价值的数据.
- B3-SiC - MgO混合物是超高压实验的可靠校准剂,可以同时确定P-T.
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