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Exploring Thermal and Mechanical Properties of Selected Transition Elements under Extreme Conditions: Experiments at High Pressures and High Temperatures

机译:探索极端条件下选定过渡元素的热学和力学性质:高压和高温下的实验

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摘要

Transition metals (Ti, Zr, Hf, Mo, W, V, Nb, Ta, Pd, Pt, Cu, Ag, and Au) are essential building units of many materials and have important industrial applications. Therefore, it is important to understand their thermal and physical behavior when they are subjected to extreme conditions of pressure and temperature. This dissertation presents: An improved experimental technique to use lasers for the measurement of thermal conductivity of materials under conditions of very high pressure (P, up to 50 GPa) and temperature (T up to 2500 K). An experimental study of the phase relationship and physical properties of selected transition metals, which revealed new and unexpected physical effects of thermal conductivity in Zr, and Hf under high P-T. New phase diagrams created for Hf, Ti and Zr from experimental data. P-T dependence of the lattice parameters in α-hafnium. Contrary to prior reports, the α-ω phase transition in hafnium has a negative dT/dP slope. New data on thermodynamic and physical properties of several transition metals and their respective high P-T phase diagrams. First complete thermodynamic database for solid phases of 13 common transition metals was created. This database has: All the thermochemical data on these elements in their standard state (mostly available and compiled). All the equations of state (EoS) formulated from pressure-volume-temperature data (measured as a part of this study and from literature). Complete thermodynamic data for selected elements from standard to extreme conditions. The thermodynamic database provided by this study can be used with available thermodynamic software to calculate all thermophysical properties and phase diagrams at high P-T conditions. For readers who do not have access to this software, tabulated values of all thermodynamic and volume data for the 13 metals at high P-T are included in the APPENDIX. In the APPENDIX, a description of several other high-pressure studies of selected oxide systems is also included.Thermophysical properties (Cp, H, S, G) of the high P-T ω-phase of Ti, Zr and Hf were determined during the optimization of the EoS parameters and are presented in this study for the first time. These results should have important implications in understanding hexagonal-close-packed to simple-hexagonal phase transitions in transition metals and other materials.
机译:过渡金属(Ti,Zr,Hf,Mo,W,V,Nb,Ta,Pd,Pt,Cu,Ag和Au)是许多材料必不可少的建筑单元,并具有重要的工业应用。因此,重要的是要了解它们在极端压力和温度条件下的热和物理行为。本论文提出:一种改进的实验技术,用于在非常高的压力(P,最高50 GPa)和温度(T最高2500 K)的条件下使用激光测量材料的热导率。对所选过渡金属的相关系和物理性质进行的实验研究,揭示了在高P-T下Zr和Hf的热导率具有新的和出乎意料的物理效应。根据实验数据为Hf,Ti和Zr创建了新的相图。 α-ha中晶格参数的P-T依赖性。与先前的报告相反,ha中的α-ω相变具有负dT / dP斜率。有关几种过渡金属的热力学和物理性质及其各自的高P-T相图的新数据。创建了第一个完整的13种常见过渡金属固相热力学数据库。该数据库具有:这些元素在标准状态下的所有热化学数据(大部分可用并编译)。所有状态方程(EoS)均由压力-体积-温度数据(作为本研究的一部分和来自文献的测量)得出。从标准条件到极端条件的选定元素的完整热力学数据。这项研究提供的热力学数据库可与可用的热力学软件一起使用,以计算在高P-T条件下的所有热物理性质和相图。对于无法使用该软件的读者,附录中包括了13种金属在高P-T下的所有热力学和体积数据的列表值。在附录中,还包括对所选氧化物体系的其他一些高压研究的描述。在优化过程中确定了Ti,Zr和Hf的高PTω相的热物理性质(Cp,H,S,G)的EoS参数,并在本研究中首次提出。这些结果对于理解过渡金属和其他材料中六方密堆积到简单六方相变具有重要意义。

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    Hrubiak Rostislav;

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  • 年度 2012
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