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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Non-local damage model based on displacement averaging
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Non-local damage model based on displacement averaging

机译:基于位移平均的非局部损伤模型

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Continuum damage models describe the changes of material stiffness and strength, caused by the evolution of defects, in the framework of continuum mechanics. In many materials, a fast evolution of defects leads to stress-strain laws with softening, which creates serious mathematical and numerical problems. To regularize the model behaviour, various generalized continuum theories have been proposed. Integral-type non-local damage models are often based on weighted spatial averaging of a strain-like quantity. This paper explores an alternative formulation with averaging of the displacement field. Damage is assumed to be driven by the symmetric gradient of the non-local displacements. It is demonstrated that an exact equivalence between strain and displacement averaging can be achieved only in an unbounded medium. Around physical boundaries of the analysed body, both formulations differ and the non-local displacement model generates spurious damage in the boundary layers. The paper shows that this undesirable effect can be suppressed by an appropriate adjustment of the non-local weight function. Alternatively, an implicit gradient formulation could be used. Issues of algorithmic implementation, computational efficiency and smoothness of the resolved stress fields are discussed. Copyright (c) 2005 John Wiley C Sons, Ltd.
机译:连续体损伤模型在连续体力学的框架内描述了由于缺陷的发展而引起的材料刚度和强度的变化。在许多材料中,缺陷的快速发展会导致应力应变定律发生软化,从而产生严重的数学和数值问题。为了规范化模型行为,已经提出了各种广义连续论。整体式非局部损伤模型通常基于应变样量的加权空间平均。本文探讨了平均位移场的替代公式。假定损坏是由非局部位移的对称梯度驱动的。结果表明,只有在无边界的介质中才能实现平均应变与平均位移之间的精确等价关系。在被分析物体的物理边界周围,两种公式都不同,并且非局部位移模型会在边界层中产生虚假损坏。本文表明,可以通过适当调整非局部权重函数来抑制这种不良影响。可替代地,可以使用隐式梯度公式。讨论了解决应力场的算法实现,计算效率和平滑度等问题。版权所有(c)2005 John Wiley C Sons,Ltd.

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