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A 3-D CHAIN ALGORITHM WITH PSEUDO-RIGID-BODY MODEL ELEMENTS

机译:具有伪刚体模型元素的3D链算法

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A chain algorithm element is created from pseudo-rigid-body segments and used in a chain calculation that accurately predicts the force deflection relationship of beams with large 3-D deflections. Each chain element is made up of three superimposed pseudo-rigid-body models acting orthogonally in relation to each other. The chain algorithm can accurately and quickly predict large displacements and the force-deflection relationship of lateral torsional buckled beams. This approach is not intended to compete with finite element analysis, but rather is a supplement tool that may prove particularly useful in the early phases of design when many analysis iterations are required. The 3-D chain algorithm is demonstrated and compared to the finite element analysis for the nonlinear large-deflection, post-buckling path of a flexible beam undergoing lateral-torsional buckling.
机译:从伪刚体段创建链算法元素,并将其用于链计算中,以精确预测具有较大3D挠度的梁的力挠度关系。每个链元由三个相互正交的叠加的伪刚体模型组成。链式算法可以准确,快速地预测侧向扭转屈曲梁的大位移和力-挠关系。这种方法无意与有限元分析竞争,而是一种补充工具,在需要进行多次分析迭代的情况下,它可能在设计的早期阶段特别有用。演示了3-D链算法,并将其与有限元分析进行了非线性比较,该有限元分析用于柔性梁经历横向扭转屈曲的非线性大挠度后屈曲路径。

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