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Multiscale thermomechanical contact: Computational homogenization with isogeometric analysis

机译:多尺度热机械接触:等几何分析的计算均质化

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摘要

SUMMARY: A computational homogenization framework is developed in the context of the thermomechanical contact of two boundary layers with microscopically rough surfaces. The major goal is to accurately capture the temperature jump across the macroscopic interface in the finite deformation regime with finite deviations from the equilibrium temperature. Motivated by the limit of scale separation, a two-phase thermomechanically decoupled methodology is introduced, wherein a purely mechanical contact problem is followed by a purely thermal one. In order to correctly take into account finite size effects that are inherent to the problem, this algorithmically consistent two-phase framework is cast within a self-consistent iterative scheme that acts as a first-order corrector. For a comparison with alternative coupled homogenization frameworks as well as for numerical validation, a mortar-based thermomechanical contact algorithm is introduced. This algorithm is uniformly applicable to all orders of isogeometric discretizations through non-uniform rational B-spline basis functions. Overall, the two-phase approach combined with the mortar contact algorithm delivers a computational framework of optimal efficiency that can accurately represent the geometry of smooth surface textures. © 2013 John Wiley & Sons, Ltd.
机译:概述:在两个边界层与微观粗糙表面的热机械接触的背景下,开发了计算均质化框架。主要目标是在有限变形范围内,精确地捕获宏观界面上的温度跃变,并且与平衡温度之间存在有限偏差。由于水垢分离的限制,引入了两相热机械解耦的方法,其中,纯机械接触问题之后是纯热接触问题。为了正确考虑问题固有的有限大小效应,将此算法一致的两阶段框架强制转换为充当一阶校正器的自洽迭代方案。为了与替代耦合均质框架进行比较以及进行数值验证,引入了基于研钵的热机械接触算法。通过非均匀有理B样条基函数,该算法可统一应用于所有等阶离散化。总体而言,两阶段方法与灰浆接触算法相结合,可提供最佳效率的计算框架,该框架可准确表示光滑表面纹理的几何形状。 ©2013 John Wiley&Sons,Ltd.

著录项

  • 作者

    Temizer I.;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 English
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