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一种跨原子/连续介质尺度的多尺度耦合方法 被引量:3

A multiscale coupling scheme spanning the atoms/continuum
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摘要 基于原子尺度上的分析手段对研究材料变形和失效机理非常重要,且为材料在宏观尺度连续性理论中本构关系的进一步发展奠定了基础.而不同尺度下的连接对揭示材料变形与破坏的多尺度现象具有重要意义.本文建立了一种跨原子/连续介质尺度的耦合数值模型,采用位移迭代方法对原子与有限元节点进行连接.耦合模型算例中观察到了裂纹钝化和空洞扩张的演化结果,与理论和实验结论相符,表明本文提出的方法和模型的合理性. In small scales, atomic approaches are important in finding various mechanisms of material deformations and failures, while at the macroscopic scale continuum theories provide foundations for developing physical or constitutive laws. Connections for different scales are significant to reveal the multiscale process of material deformation and failure. A coupling numerical model across atom/continuum was established in this paper, and the linkage between atoms and finite element nodes was based on a displacement iteration procedure. Preliminary results of crack blunting and voids expansion were obtained by the coupling model.
出处 《四川大学学报(自然科学版)》 CAS CSCD 北大核心 2017年第1期124-130,共7页 Journal of Sichuan University(Natural Science Edition)
基金 国防重点基金资助项目(XXX:B1520132013-1)
关键词 原子 连续介质 有限元节点 多尺度耦合 位移迭代 Atoms Continuum Finite element nodes Multiscale coupling Displacement iteration
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  • 1吴映飞,王崇愚,郭雅芳.体心立方铁中裂纹扩展的结构演化研究[J].自然科学进展,2005,15(2):206-211. 被引量:8
  • 2黄丹,陶伟明,郭乙木.分子动力学模拟单晶纳米铝丝的拉伸破坏[J].兵器材料科学与工程,2005,28(3):1-4. 被引量:12
  • 3郭雅芳,高索文.分子动力学模拟裂纹扩展及相关尺寸行为[J].北京交通大学学报,2005,29(4):5-9. 被引量:8
  • 4CHENG Nai-liang, NIU Si-tong, XU Gui-ying, et al. Barin. Thermochemical data of pure substances[ M]. Beijing: Science Press,2003.
  • 5Boo W O,Stout J W. Heat capacity and entropy of CuF2 and CrF2 from 10 to 300 K, anomalies associated with magnetic ordering and evaluation of magnetic contributions to the heat capacity[J]. J Chem Phys,1979,71 (1) : 9 - 16.
  • 6Stφlen S, Glockner R,Gronvold F,et al. Heat capacity and thermodynamic properties of nearly stoichiomctric wustitc from 13 to 450 K[ J]. American Mineralogist, 1996,81 : 973 - 981.
  • 7Ben-Amotz D,Widom B. Generalized solvation heat capacities[ J]. J Phys Chem B,2006,110 : 19839 - 19849.
  • 8Dandekar D K,Tsou J J,Ho J C. Low- temperature heat capacities of orthorhombic and cubic PbF: [J].J Phys Rev B,1979,20(8) : 2523 - 2525.
  • 9Likhachev V N, Vinogradov G A. Anomalous heat capacity of nanoparticles[ J]. Phys Lett A,2006,357 : 236 -239.
  • 10Safarov M M, Zaripova M A, Radzhabov F S. Thermal capacity of aqueous aerozine solutions as a function of temperature and pressure [ J ]. Measurement Techniques, 1996,39 (5) : 540 - 554.

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