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首页> 外文期刊>International Journal of Solids and Structures >ANISOTROPIC DAMAGE MECHANICS BASED ON STRAIN ENERGY EQUIVALENCE AND EQUIVALENT ELLIPTICAL MICROCRACKS
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ANISOTROPIC DAMAGE MECHANICS BASED ON STRAIN ENERGY EQUIVALENCE AND EQUIVALENT ELLIPTICAL MICROCRACKS

机译:基于应变能当量和等效椭圆形微裂纹的各向异性损伤力学

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A theory of damage mechanics is introduced based on a principle of strain energy equivalence. This principle is used to develop the effective continuum elastic properties of a damaged solid in terms of the undamaged elastic properties and a scalar damage field. The damage variable is defined as the volume fraction of a damage zone associated with equivalent elliptical microcracks. This definition provides a means by which a damaged isotropic material can exhibit anisotropic (orthotropic) properties, and entails determining effective crack orientation and geometry factors from the local deformation. Strain energy dissipation associated with crack growth(not nucleation) is used to develop a consistent damage evolution equation. This evolution equation is related to the standard power law model of crack growth commonly used in fracture mechanics, and to the equivalent stress measure commonly used in mechanics of plastic deformation. The combination of representing local damage as an effective elliptical crack volume fraction, a consistent damage evolution equation, and the determination of effective elastic properties using a strain energy equivalence principle yields a simple, yet powerful, approach to predicting failure of mechanical components. (C) 1997 Elsevier Science Ltd. [References: 63]
机译:介绍了基于应变能当量原理的损伤力学理论。根据未损坏的弹性和标量损坏场,此原理用于开发损坏的固体的有效连续弹性。损伤变量定义为与等效椭圆形微裂纹相关的损伤区域的体积分数。该定义提供了一种手段,使受损的各向同性材料可以表现出各向异性(正交各向异性)特性,并需要根据局部变形确定有效的裂纹取向和几何因子。与裂纹扩展(非成核)相关的应变能耗散用于建立一致的损伤演化方程。该演化方程与断裂力学中常用的裂纹扩展的标准幂定律模型有关,并且与塑性变形力学中常用的等效应力度量有关。将局部损伤表示为有效的椭圆形裂纹体积分数,一致的损伤演化方程,以及使用应变能当量原理确定有效的弹性,这些组合可以简单而有效地预测机械部件的失效。 (C)1997 Elsevier Science Ltd. [参考:63]

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