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Dynamic plastic behavior of a free-free beam striking the mid-span of a clamped beam with shear and membrane effects considered

机译:考虑剪切和膜效应的自由-自由梁撞击夹持梁中跨的动态塑性行为

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Recently Yu et al. (Int. J. Solids Struct. 38 (2001) 261) made a study on the dynamic behavior of a flying free-free beam striking the tip of a cantilever beam using the rigid, perfectly plastic (r-p-p) material model. Later, also based on the r-p-p material model Yang and Yu (Mech. Struct. Mach. 29 (2001) 391) analyzed another impact problem of a free rotating hinge beam striking a cantilever beam. Both of these studies ignored the finite deflection effects on the plastic behavior of the colliding beams. However if the free-free beam strikes a clamped beam, the influence of finite-deflections, or, geometric changes, must be retained in the governing equation if the maximum permanent transverse displacement of the clamped beam exceeds the corresponding beam thickness. The problem becomes more interesting since the deformation mechanisms of the beam system and the partitioning of energy dissipation in the beams are significantly different from those predicted by ignoring the influence of membrane forces. Accordingly the failure modes of the structure are different. In the present paper, a theoretical model based on the r-p-p material idealization is proposed to simulate the dynamic behavior when the mid-point of a translating free-free beam impinging on the mid-span of a clamped beam with the beam axes perpendicular to each other. The plastic behavior of the beam system is explored with shear sliding and finite deflection effects taken into account. The final deflection, the dissipation of energy within the two beams after impact and the influence of the structural and material parameters are discussed. It is shown that membrane force plays an important role during the response process, especially when the deflection is of the same order as the thickness of the clamped beam.
机译:最近于等。 (Int。J. Solids Struct。38(2001)261)使用刚性的,完全塑性的(r-p-p)材料模型对自由自由飞行的梁撞击悬臂梁尖端的动力学行为进行了研究。后来,同样基于r-p-p材料模型,Yang和Yu(Mech。Struct。Mach。29(2001)391)分析了自由旋转铰链梁撞击悬臂梁的另一个冲击问题。这两项研究都忽略了对挠性梁塑性行为的有限挠度影响。但是,如果自由梁撞击固定梁,则如果固定梁的最大永久横向位移超过相应梁的厚度,则必须在控制方程式中保留有限挠度或几何变化的影响。这个问题变得更加有趣,因为梁系统的变形机理和梁中能量耗散的分配与通过忽略膜片力的影响所预测的显着不同。因此,结构的失效模式是不同的。本文提出了一种基于rpp材料理想化的理论模型,以模拟自由自由平移梁的中点撞击束流轴垂直于束缚梁中跨的动力行为。其他。在考虑剪切滑动和有限挠度影响的情况下探索梁系统的塑性行为。讨论了最终的挠度,冲击后两束梁内的能量耗散以及结构和材料参数的影响。结果表明,膜力在响应过程中起着重要的作用,尤其是当挠度与夹持梁的厚度相同时。

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