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On static analysis of tensile structures with sliding cables: the frictional sliding case

机译:滑动电缆拉伸结构静态分析:摩擦滑动壳体

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摘要

In some structural systems, such as cable structures, membranes and tensegrity structures, the use of sliding cables allows to reduce the number of elements required to be controlled during tensioning or activation. However, using sliding cables modifies the structural behavior of tensile structures since it alters the distribution of axial forces in structural members. This has been experienced in structures with continuous cables under the assumption of frictionless sliding. However, sliding-induced friction can further alter the behavior of the system. An enhancement of the static analysis of tensile structures with sliding-induced friction is investigated in this paper. In the proposed formulations, the finite-element analysis method and the dynamic relaxation method are combined with a linear complementary approach. Sliding-induced friction is integrated in the formulations through the consideration of the Euler-Eytelwein equation. The importance of considering sliding-induced friction in the static analysis of tensile structures is demonstrated through a series of examples, where it is shown that friction significantly affects the mechanical behavior of the structures. The examples also reveal that the proposed formulations do not affect the computational time of the static analyses.
机译:在一些结构系统中,例如电缆结构,膜和长态结构,滑动电缆的使用允许减少在张紧或激活期间控制所需的元件数量。然而,使用滑动电缆改变拉伸结构的结构行为,因为它改变了结构构件中的轴向力的分布。这在带有连续电缆的结构中经历过摩擦力滑动的结构。然而,滑动诱导的摩擦可以进一步改变系统的行为。本文研究了具有滑动诱导的摩擦的拉伸结构静态分析的增强。在所提出的配方中,有限元分析方法和动态松弛方法与线性互补方法组合。通过考虑欧拉 - 眼壁素方程,在制剂中集成了滑动诱导的摩擦。通过一系列实施例证明了考虑拉伸结构静态分析中的滑动诱导摩擦的重要性,示出了摩擦显着影响结构的机械行为。这些例子还表明,所提出的制剂不影响静态分析的计算时间。

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