Dynamic response of unsupported and supported cavities in an elastic half-space under moving normal and torsional loads

V. Ukrainets, S. Girnis, K.T. Makashev, V.T. Stanevich
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Abstract

This study explores the impact of uniformly moving normal and torsional loads along an infinitely long circular cylindrical cavity, situated within a half-space (body), on the behavior of the elastic half-space. The cavity is either unreinforced or reinforced by a thin-walled elastic shell. To describe the motion of the body and the shell, dynamic equations of elasticity theory in the Lamé potentials and equations of the classical shell theory are used, respectively. The equations are represented in coordinate systems moving together with the loads (cylindrical or Cartesian). The method of integral Fourier transform is used to determine the stress-strain state (SSS) of the half-space. The solution to this problem considers waves reflected from the boundary of the half-space, which occur during the movement of loads, instead of assuming the body is an elastic space like similar works. The results of numerical experiments are presented, illustrating the influence of the shell on the deformed state of the half-space boundary under the action of axisymmetric normal and shear loads, which are uniformly applied within a certain range and move at a constant speed.
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弹性半空间中无支撑和有支撑空腔在移动法向和扭转载荷作用下的动态响应
本研究探讨了位于半空间(体)内的无限长圆柱形空腔沿均匀移动的法向和扭转载荷对弹性半空间行为的影响。该空腔要么未被加固,要么被薄壁弹性壳体加固。为了描述体和壳的运动,分别使用了拉梅势弹性理论的动态方程和经典壳理论的方程。这些方程在与载荷一起运动的坐标系(圆柱或笛卡尔)中表示。积分傅立叶变换法用于确定半空间的应力应变状态(SSS)。该问题的解决方案考虑了从半空间边界反射的波,这些波在载荷运动过程中发生,而不是像类似的工作一样假设主体是一个弹性空间。本文介绍了数值实验结果,说明了在轴对称法向载荷和剪切载荷作用下,壳体对半空间边界变形状态的影响。
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