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On the FEM modeling of mechanical systems controlled by relative motion of a member: A pendulum-mass interaction test case

机译:关于受构件相对运动控制的机械系统的FEM建模:摆质量相互作用测试案例

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摘要

A new approach for simulating the dynamics of mechanical systems with relative movements of members by the finite element method (FEM) is proposed. The moving member is modeled by a mass traveling along a guiding beam. The mass is incorporated into the beam element that is being traversed. The nodal inertia forces due to the relative mass' motion are derived from the rate of changing the mass matrix of this composite element. These inertia forces, which are added to the regular nodal forces, reflect the Coriolis-type effects present in the system. Several ways of calculating and including them into the time-integrating procedure are presented. The approach allows treating the moving member as a controller; with a desired pattern of the member's motion imposed on the system as input to analyze its response as output. The proposed procedure is tested on the problem of controlling pendulum-like oscillations of a beam by a moving mass. The element size and the time-step of numerical integration to secure sufficient accuracy of the approach for different mass motion patterns are discussed in detail. In particular, it is demonstrated that the case of the mass motion pattern attenuating the pendulum oscillations with a constant damping ratio can be precisely simulated.
机译:提出了一种通过有限元方法来模拟构件相对运动的机械系统动力学的新方法。通过沿导向梁行进的质量来模拟移动构件。该质量被合并到正在移动的梁单元中。由相对质量运动引起的节点惯性力是由该复合元件的质量矩阵的变化率得出的。这些添加到常规节点力上的惯性力反映了系统中存在的科里奥利效应。提出了几种计算方法并将其包括在时间积分过程中。该方法允许将移动部件视为控制器。将成员的期望运动模式强加给系统作为输入,以分析其响应作为输出。在通过移动质量控制光束的摆状振荡的问题上测试了所提出的过程。详细讨论了元素尺寸和数值积分的时间步骤,以确保该方法对于不同的质量运动模式具有足够的准确性。特别地,证明了可以精确地模拟质量运动模式以恒定的阻尼比衰减摆振动的情况。

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