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首页> 外文期刊>Journal of Mechanical Design >Use of the Finite Element Method in the Analysis of Impact-Induced Longitudinal Waves in Constrained Elastic Systems
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Use of the Finite Element Method in the Analysis of Impact-Induced Longitudinal Waves in Constrained Elastic Systems

机译:有限元法在约束弹性系统中冲击诱导纵向波分析中的应用

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摘要

In rotating elastic rods, dispersions occurs as the result of the finite rotations. By using Fourier method, it can be shown that the impact-induced longitudinal waves no longer travel with the same phase velocities. Furthermore, the speeds of the wave propagation are independent of the impact conditions including the value of the coefficient of restitution. In this investigation the use of the finite element method in the analysis of impact-induced longitudinal waves in rotating elastic rods is examined. The equations of motion are developed using the principle of virtual work in dynamics. Jump discontinuity in the system velocity vector as result of impact is predicted using the generalized impulse momentum equations. The solution obtained using the finite element method is compared with the solution obtained using Fourier method. Numerical results show that there is a good agreement between the solution obtained by using Fourier method and the finite element solution in the analysis of wave motion. However, discrepancies between the two solutions in the analysis of the velocity waves are observed and discussed in this paper.
机译:在旋转的弹性杆中,由于有限旋转而发生分散。通过使用傅立叶方法,可以证明冲击波引起的纵波不再以相同的相速度传播。此外,波传播的速度与包括恢复系数的值的冲击条件无关。在这项研究中,研究了有限元方法在旋转弹性杆中冲击引起的纵向波分析中的应用。运动方程是使用动力学中的虚拟功原理开发的。使用广义冲量动量方程可预测由于撞击而导致的系统速度向量中的跳跃不连续性。将使用有限元方法获得的解与使用傅里叶方法获得的解进行比较。数值结果表明,在波浪运动分析中,采用傅里叶法得到的解与有限元解之间有很好的一致性。但是,在本文中观察和讨论了两种解决方案在速度波分析中的差异。

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