首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Concepts of Separated J-Integrals, Separated Energy Release Rates, and the Component Separation Method of the J-Integral for Interfacial Fracture Mechanics
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Concepts of Separated J-Integrals, Separated Energy Release Rates, and the Component Separation Method of the J-Integral for Interfacial Fracture Mechanics

机译:界面断裂力学中分离J积分,分离能量释放率的概念和J积分的成分分离方法

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First, this paper presents the concepts of separated J-integrals and separated energy release rates. The path-independent separated J-integrals have the physical significance of energy flows into an interfacial crack tip from adjacent individual material sides or, equivalently, separated energy release rates. Thus, the J-integral and the energy release rate can be evaluated by the sum of the path-independent separated J-integrals. Second, the relations between the separated J-integrals and the stress intensity factors are derived. Third, the component separation method of the J-integral is extended for interfacial crack problems to allow accurate evaluation of the stress intensity factors. Finally, pertinent numerical analyses are carried out to demonstrate the usefulness of the separated J-integrals and the component separation method.
机译:首先,本文介绍了分离的J积分和分离的能量释放速率的概念。与路径无关的分离的J积分具有物理意义,即能量从相邻的单个材料侧面或等效的分离的能量释放速率流入界面裂纹尖端。因此,可以通过与路径无关的单独的J积分之和来评估J积分和能量释放率。其次,推导了分离的J积分与应力强度因子之间的关系。第三,扩展了J积分的成分分离方法以解决界面裂纹问题,从而可以准确评估应力强度因子。最后,进行了相关的数值分析,以证明分离出的J积分和组分分离方法的有用性。

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