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Thermodynamically consistent nonlocal theory of ductile damage

机译:热力学一致的非局部延性破坏理论

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in this paper a thermodynamically consistent, weakly nonlocal theory of ductile damage is presented. The theory is based on the classical dynamical balance laws of forces and couples in the physical space and dynamical balance laws of material forces on evolving defects and on the first and second law of thermodynamics formulated for physical and material space. Assuming general constitutive equations their frame-invariant and thermodynamically admissible form is determined. It is shown that physical and material forces and stresses consist of two parts, a nondissipative part derivable from a free energy potential, and a dissipative part, which can be obtained from a dissipation pseudopotential, if such a pseudo-potential exists.The theory can be considered as a framework with gradient elastoplasticity, isotropic and anisotropic brittle and ductile gradient damage at finite strain as special cases. (C) 2003 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了热力学上一致的,非局部的韧性损伤理论。该理论基于物理空间中力和耦合的经典动态平衡定律以及不断发展的缺陷上物质力的动态平衡定律,以及为物理和物质空间制定的热力学第一定律和第二定律。假设一般的本构方程,确定了它们的框架不变性和热力学上可接受的形式。结果表明,物理力和材料力和应力由两部分组成,一个是由自由能势衍生的非耗散部分,另一个是可以从耗散伪电势获得的耗散部分(如果存在这种伪电势)。在特殊情况下,它被视为具有梯度弹塑性,各向同性和各向异性的脆性和延性梯度损伤的框架。 (C)2003 Elsevier Ltd.保留所有权利。

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