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A massless boundary component mode synthesis method for elastodynamic contact problems

机译:弹性动力接触问题的无质量边界分量模态合成方法

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摘要

We propose to combine the ideas of mass redistribution and component mode synthesis. More specifically, we employ the MacNeal method, which readily leads to a singular mass matrix, and an accordingly modified version of the Craig-Bampton method. Besides obtaining a massless boundary, we achieve a drastic reduction of the mathematical model order in this way compared to the parent finite element model. Contact is modeled using set-valued laws and time stepping is carried out with a semi-explit scheme. We assess the method's computational performance by a series of benchmarks, including both frictionless and frictional contact. The results indicate that the proposed method achieves excellent energy conservation properties and superior convergence behavior. It reduces the spurious oscillations and decreases the computational effort by about 1-2 orders of magnitude compared to the current state of the art (mass-carrying component mode synthesis method). We believe that the computational performance and favorable energy conservation properties will be valuable for the prediction of vibro-impact processes and physical damping.
机译:我们建议将质量再分布和分量模态合成的思想结合起来。更具体地说,我们采用了MacNeal方法,该方法很容易导致奇异的质量矩阵,以及Craig-Bampton方法的相应修改版本。除了获得无质量边界外,与父有限元模型相比,我们以这种方式实现了数学模型阶数的大幅降低。使用设定值定律对接触进行建模,并使用半显式方案进行时间步长。我们通过一系列基准测试来评估该方法的计算性能,包括无摩擦接触和摩擦接触。结果表明,所提方法具有优异的节能性能和优异的收敛性能。与当前技术水平(载质量分量模式合成方法)相比,它减少了杂散振荡,并将计算工作量减少了约1-2个数量级。我们认为,该算法的计算性能和良好的能量守恒特性对于预测振动冲击过程和物理阻尼具有重要意义。

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