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Comparison of Analytical and Experimental Results for Longitudinal Impacts on Elastic Rods

机译:纵向作用在弹性杆上的分析和实验结果比较

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In this paper, the dynamic problem of a rigid body colliding with an elastic rod is studied in some detail. Different contact theories for modeling impact responses are compared with experimental measurements. Based on an idea originally presented by Sears for collisions of two rods with rounded ends, a boundary approach combining Hertzian contact law and St. Venant's elastodynamics is developed to describe longitudinal waves in rods. It is shown that this boundary approach agrees very well with experimental results. For the simulation of long-term dynamic behavior after impact, a traditional rigid-body approach is advantageous because the elastic vibration of the rod will decay fast due to the structural damping and the elastic rod then moves like a rigid body. Hence, formodeling longitudinal impacts, it is suggested that both elastodynamics and rigid-body dynamics are combined into a two-timescale model. The short time behavior of wave propagation due to impacts is modeled using elastodynamics, and the state of the rigid-body mode is transferred to the rigid-body approach as the initial condition for the motion. The long-term behavior after impact is then computed using the rigid-body approach.
机译:本文详细研究了刚体与弹性杆碰撞的动力学问题。将用于模拟冲击响应的不同接触理论与实验测量结果进行了比较。基于Sears最初提出的将两个带有圆头的杆碰撞的想法,开发了一种结合赫兹接触定律和St. Venant弹性力学的边界方法来描述杆中的纵向波。结果表明,这种边界方法与实验结果非常吻合。为了模拟冲击后的长期动态行为,传统的刚体方法是有利的,因为由于结构阻尼,杆的弹性振动会快速衰减,然后弹性杆会像刚体一样运动。因此,为建模纵向冲击,建议将弹性动力学和刚体动力学都组合为两个时间尺度的模型。利用弹性动力学对由于冲击而引起的波传播的短时行为进行了建模,并将刚体模式的状态转移到刚体方法作为运动的初始条件。然后使用刚体方法计算冲击后的长期行为。

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