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The dynamics of a shear band

机译:剪切带的动力学

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摘要

A shear band of finite length, formed inside a ductile material at a certain stage of a continued homogeneous strain, provides a dynamic perturbation to an incident wave field, which strongly influences the dynamics of the material and affects its path to failure. The investigation of this perturbation is presented for a ductile metal, with reference to the incremental mechanics of a material obeying the J2–deformation theory of plasticity (a special form of prestressed, elastic, anisotropic, and incompressible solid). The treatment originates from the derivation of integral representations relating the incremental mechanical fields at every point of the medium to the incremental displacement jump across the shear band faces, generated by an impinging wave. The boundary integral equations (under the plane strain assumption) are numerically approached through a collocation technique, which keeps into account the singularity at the shear band tips and permits the analysis of an incident wave impinging a shear band. It is shown that the presence of the shear band induces a resonance, visible in the incremental displacement field and in the stress intensity factor at the shear band tips, which promotes shear band growth. Moreover, the waves scattered by the shear band are shown to generate a fine texture of vibrations, parallel to the shear band line and propagating at a long distance from it, but leaving a sort of conical shadow zone, which emanates from the tips of the shear band.
机译:在连续均质应变的某个阶段在韧性材料内部形成的有限长度的剪切带会给入射波场带来动态扰动,这会严重影响材料的动力学并影响其破坏路径。本文针对延性金属对这种扰动进行了研究,并参考了遵循J2塑性变形理论(一种特殊形式的预应力,弹性,各向异性和不可压缩固体)的材料的增量力学。该处理源自积分表示的推导,该积分表示将在介质的每个点处的增量机械场与由冲击波生成的横穿剪切带面的增量位移跳跃相关联。通过搭配技术对边界积分方程(在平面应变假设下)进行了数值求解,该技术考虑了剪切带尖端处的奇异性,并允许分析入射到剪切带的入射波。结果表明,剪切带的存在会引起共振,这在增量位移场和剪切带尖端处的应力强度因子中可见,从而促进了剪切带的生长。此外,剪切带散布的波被显示为产生细微的振动纹理,平行于剪切带线并在很长的距离内传播,但留下了一个圆锥形阴影区域,该阴影区域来自于剪切带的尖端。剪切带。

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