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Computational Modeling ot drain Boundaries in ZrB_2: Implications for Lattice Thermal Conductivity

机译:ZrB_2中漏极边界的计算建模:对晶格热导率的影响

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摘要

A combination of ab initio, atomistic, and finite element methods (FEM) was used to investigate fundamental properties of grain boundaries and grain boundary networks and their impact on lattice thermal conductivity in the ultra high-temperature ceramic ZrB_2. The structure, energetics, and lattice thermal conductance of certain low energy grain boundaries were studied. Atomic models of these boundaries were relaxed using density functional theory. Information about bonding across the interfaces was determined from the electron localization function. Interfacial thermal conductances were computed using nonequi-librium molecular dynamics. Microstructural models were used to determine the reduction in lattice thermal conductivity due grain boundary networks where FEM meshes were constructed on top of microstructural images.
机译:使用从头算,原子方法和有限元方法(FEM)的组合研究了超高温陶瓷ZrB_2中晶界和晶界网络的基本性质及其对晶格热导率的影响。研究了某些低能晶界的结构,能量和晶格导热。使用密度泛函理论放松了这些边界的原子模型。关于界面键合的信息由电子定位函数确定。使用非平衡分子动力学来计算界面热导。使用微结构模型来确定由于晶界网络而导致的晶格热导率的降低,其中在微结构图像之上构建了FEM网格。

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  • 来源
    《Journal of the American Ceramic Society》 |2012年第12期|3971-3978|共8页
  • 作者单位

    Thermal Protection Materials Branch, NASA Ames Research Center, Mail Stop 234, Moffett Field 94035, California;

    Department of Physics and Astronomy, Clemson University, Clemson 29631, South Carolina;

    Thermal Protection Materials Branch, NASA Ames Research Center, Mail Stop 234, Moffett Field 94035, California;

    Entry Systems and Technology Division, NASA Ames Research Center, Mail Stop 230-3, Moffett Field 94035, California;

  • 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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