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The elastic-viscoplastic field near mode iii dynamic propagating crack-tip of interface in double dissimilar materials

机译:双重异种材料界面中Ⅲ型动态扩展界面附近的弹粘塑性场

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The existence of viscosity effect at the interface of double dissimilar materials has an important impact to the distribution of interface crack-tip field and the properties variety of the interface itself. The singular is considered in crack-tip, and the elastic-viscoplastic quasi-static propagating governing equations of double dissimilar materials at interface crack-tip field are established. The displacement potential function and boundary condition of interface crack-tip are introduced and the numerical analysis of rigid-elastic viscoplastic interface for mode III are worked out. The stress-strain fields are obtained at the crack-tip and the variations of solutions are discussed according to each parameter. The numerical results show that the viscosity effect is a main factor of interface propagating crack-tip field, and the interface crack-tip is a viscoplastic field that is governed by viscosity coefficient, Mach number and singular factor.
机译:双重异种材料界面处的粘性效应的存在对界面裂纹尖端场的分布和界面本身的性能变化具有重要影响。在裂纹尖端考虑了奇异性,建立了界面裂纹尖端处双异种材料的弹黏塑性准静态传播控制方程。介绍了界面裂纹尖端的位移势函数和边界条件,并对Ⅲ型刚弹粘塑性界面进行了数值分析。在裂纹尖端获得应力-应变场,并根据每个参数讨论溶液的变化。数值结果表明,黏度效应是界面扩展裂纹尖端场的主要因素,界面裂纹尖端是由黏度系数,马赫数和奇异因子控制的粘塑性场。

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