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The influence of the initial microdamage anisotropy on macrodamage mode during extremely fast thermomechanical processes

机译:在极快的热机械过程中,初始微损伤各向异性对宏观损伤模式的影响

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摘要

In recently proposed thermo-elasto-viscoplastic material model for metals, the damage is described by the second-order tensor, called microdamage tensor to express the experimentally observed anisotropy (Perzyna in Mechanics 27( 1 ):25-42,2008; Glema et al. in Int J Damage Mech 18(3):205-231, 2009; Sumelka in The constitutive model of the anisotropy evolution for metals with microstructural defects. Publishing House of Poznan University of Technology, Poznan, 2009). This variable influences the entire deformation process being modelled, inducing anisotropic response of the material. In this model, the microdamage evolution is additively decomposed into the nucleation and the growth terms. However, for the sake of simplicity, for extremely fast thermomechanical processes, which are considered as a central point, microdamage nucleation term can be omitted. It induces the necessity of the initial anisotropic microdamage state definition in physically justified bounds (growth is possible only for nucleating or existing microdamages). This paper deals with the consequences of different initial microdamage anisotropy assumption, indicating its significant role in proper description of damage. In particular, we conclude that for detailed experimentally observed damage evolution mapped by the model (e.g. macrodamage initiation time, the velocity of macrodamage evolution, the geometry of macrodamage), its anisotropic description is necessary.
机译:在最近提出的金属热弹粘塑性材料模型中,损伤由称为微损伤张量的二阶张量描述,用以表达实验观察到的各向异性(Perzyna in Mechanics 27(1):25-42,2008; Glema等等人,Int J Damage Mech 18(3):205-231,2009; Sumelka,“具有微观结构缺陷的金属的各向异性演化本构模型”,波兹南工业大学出版社,波兹南,2009)。该变量影响建模的整个变形过程,从而引起材料的各向异性响应。在该模型中,微损伤演化被累加分解为成核和生长项。但是,为简单起见,对于被视为中心点的极其快速的热机械过程,可以忽略微损伤成核项。它在物理上合理的范围内引发了对初始各向异性微损伤状态定义的必要性(仅对于形核或现有的微损伤,生长才是可能的)。本文讨论了不同初始微损伤各向异性假设的后果,表明了其在正确描述损伤中的重要作用。特别是,我们得出结论,对于通过模型绘制的详细实验观察到的破坏演化(例如宏观破坏起始时间,宏观破坏演化速度,宏观破坏的几何形状),必须对其各向异性进行描述。

著录项

  • 来源
    《Archive of Applied Mechanics》 |2011年第12期|p.1973-1992|共20页
  • 作者单位

    Faculty of Civil and Environmental Engineering, Institute of Structural Engineering, Division of Computer Aided Design, Poznan University of Technology, ul. Piotrowo 5, 60-965 Poznan, Poland;

    Faculty of Civil and Environmental Engineering, Institute of Structural Engineering, Division of Computer Aided Design, Poznan University of Technology, ul. Piotrowo 5, 60-965 Poznan, Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microdamage anisotropy; metals; constitutive relation;

    机译:微损伤各向异性金属;本构关系;

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