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首页> 外文期刊>Journal of Applied Physics >High pressure equation of state and ideal compressive and tensile strength of MgO single crystal: Ab-initio calculations
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High pressure equation of state and ideal compressive and tensile strength of MgO single crystal: Ab-initio calculations

机译:MgO单晶的高压状态方程和理想的抗压强度和拉伸强度:从头算

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摘要

Ab-initio total energy calculations have been carried out on MgO single crystal as a function of hydrostatic compression to determine the 0?K isotherm, which is then utilized to derive the 300?K isotherm, isentrope, and Hugoniot of MgO. The theoretical isotherm, isentrope, and Hugoniot compare well with the experimental data. The shock parameters C0 and s obtained from theoretical Hugoniot are 6.74?km/s and 1.23 as compared to the experimental values of 6.87?km/s and 1.24, respectively. Having theoretically reproduced the various experimentally measured physical quantities at ambient conditions, the calculations have been extended to determine the ideal compressive and tensile strength of MgO single crystal subjected to uniaxial compressive and tensile loading along [001] direction under two deformation conditions, namely, “uniaxial strain condition” and “uniaxial stress condition.” Examination of elastic stability conditions suggests that for [001] compressive loading, the MgO single crystal will fail mechanically due to shear instability, whereas for expansion it will fail due to vanishing of tensile modulus. The ideal compressive strength under “uniaxial strain condition” and “uniaxial stress condition” is determined to be -283?GPa and -115?GPa, respectively. However, ideal tensile strength is evaluated to be 20?GPa and 11?GPa, respectively, for two loading conditions. Our results suggest that MgO single crystal will offer higher resistance against failure for compression as well as expansion along [001] direction under “uniaxial strain condition” than that for the “uniaxial stress condition.”
机译:已对MgO单晶进行了静力学计算的总能量,作为静水压的函数,以确定0?K等温线,然后将其用于导出MgO的300?K等温线,等熵和Hugoniot。理论上的等温线,等熵线和Hugoniot与实验数据进行了比较。从理论Hugoniot获得的冲击参数C 0 和s分别为6.74?km / s和1.23,而实验值分别为6.87?km / s和1.24。理论上重现了在环境条件下通过实验测量的各种物理量,已经扩展了计算以确定在两种变形条件下沿[001]方向经受单轴压缩和拉伸载荷的MgO单晶的理想压缩和拉伸强度,“单轴应变条件”和“单轴应力条件”。弹性稳定性条件的检查表明,对于[001]压缩载荷,由于剪切不稳定性,MgO单晶将在机械上失效,而对于拉伸,由于拉伸模量的消失,其将失效。确定在“单轴应变条件”和“单轴应力条件”下的理想抗压强度分别为-283?GPa和-115?GPa。但是,在两种载荷条件下,理想的抗拉强度分别为20?GPa和11?GPa。我们的结果表明,与“单轴应力条件”相比,MgO单晶在“单轴应变条件”下将具有更高的抗压缩破坏性以及沿[001]方向的膨胀性。

著录项

  • 来源
    《Journal of Applied Physics 》 |2013年第23期| 233504-233504| 共1页
  • 作者单位

    Applied Physics Division, Bhabha Atomic Research Centre, Mumbai 400085, India|c|;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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