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首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Transformation of Arbitrary Elastic Mode Shapes Into Pseudo-Free-Surface and Rigid Body Modes for Multibody Dynamic Systems
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Transformation of Arbitrary Elastic Mode Shapes Into Pseudo-Free-Surface and Rigid Body Modes for Multibody Dynamic Systems

机译:多体动态系统将任意弹性模式形状转换为伪自由曲面和刚体模式

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摘要

In multibody dynamics, the flexibility effects of each body are captured by using a linear combination of elastic mode shapes. If a co-rotational and co-translating frame of reference is used together with eigenvectors of the unconstraint body, which are free-surface modes, some spatial integrals in the floating frame of reference configuration do vanish. The corresponding coordinate system is the so-called Tisserand (or Buckens) reference frame. In the present contribution, a technique is developed for separating an arbitrary elastic mode shape into a pseudo-free-surface mode and rigid body modes. The generated pseudo-free-surface mode has most of the advantageous characteristics of a free-surface mode, and spans together with the rigid body modes the same solution space as it is spanned by the original mode shape. Due to the fact that, in the floating frame of reference configuration, the rigid body motions are already described by special generalized coordinates, only the resulting pseudo-free-surface modes are finally used to capture the flexibility effects of each body. A result of the generated pseudo-free-surface modes is that some of the spatial integrals do vanish and, thus, the equations of motion are significantly simplified. Two examples are presented in order to illustrate and to demonstrate the potential of the proposed method.
机译:在多体动力学中,通过使用弹性模式形状的线性组合来捕获每个主体的柔韧性效果。如果将同向旋转和平移的参考框架与无约束主体的特征向量(它们是自由表面模式)一起使用,则参考配置的浮动框架中的某些空间积分会消失。相应的坐标系是所谓的Tisserand(或Buckens)参考系。在本发明中,开发了一种用于将任意弹性模式形状分离为伪自由表面模式和刚体模式的技术。生成的伪自由表面模式具有自由表面模式的大多数优点,并且与刚体模式一起跨越与原始模式形状跨越相同的解空间。由于在参考配置的浮动框架中已经通过特殊的广义坐标描述了刚体的运动,因此最终仅使用生成的伪自由表面模式来捕获每个刚体的柔韧性效果。生成的伪自由表面模式的结果是某些空间积分确实消失了,因此运动方程得到了显着简化。给出了两个例子,以说明和证明所提出方法的潜力。

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