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A time-domain substructure synthesis for finite rotations of flexible mechanical systems

机译:柔性机械系统有限旋转的时域子结构合成

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This paper presents a floating IBS method for dynamic prediction of structures with finite rotations. The conventional IBS (impulse-based substructuring) method is efficient and accurate in structural transient impact analysis. When facing about finite rotations, the conventional IBS method will generate unreasonable results due to the lack of consideration of geometric nonlinearity. In this paper, the idea of floating frame of reference is introduced. The motions of structures are divided into the moving of floating frame of reference and local vibrations which are described using the idea of IBS method. Two numerical examples validate that the proposed method is available for unconstrained single-body system (free-free rotating beam) and constrained multibody system (a slider-crank system). Meanwhile, to some extent the local elastic vibration degrees of freedom can be reduced by employing interpolation matrixes.
机译:本文提出了一种浮动IBS方法,用于有限旋转结构的动态预测。传统的IBS(基于脉冲的子结构)方法在结构瞬态冲击分析中是高效且准确的。当面对有限旋转时,由于缺乏几何非线性的考虑,传统的IBS方法将产生不合理的结果。本文介绍了浮动参考框架的思想。结构的运动分为参考框架的浮动运动和局部振动,这些运动是使用IBS方法的思想来描述的。两个数值例子验证了该方法可用于无约​​束的单体系统(自由旋转梁)和受约束的多体系统(滑块-曲柄系统)。同时,通过采用插值矩阵可以在某种程度上减小局部弹性振动的自由度。

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