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An investigation of the effects of socket joint flexibility in space structures

机译:空间结构中窝关节柔韧性影响的研究

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Connection of truss elements using socket joints is one of the more common practices in the construction of space structures. Although these hollow spherical joints may deform due to the applied loads, these deformations and the resulting effects on the member axial forces are usually ignored in the analysis and design. This work is an investigation of the effects of socket joint deformability on the behavior of space grid structures. Here, the load-deformation relationships obtained from a series of biaxial loading tests on actual socket joints have been used to represent their behavior in several finite-element analysis models. These models have been analyzed using a special-purpose substructure finite element analysis program developed to account for full geometric and material nonlinear behavior. It has been demonstrated that in many occasions, node deformability results in significant changes in internal member forces, overall structural stiffness, and the limit load behavior of the structure.
机译:使用承插接头连接桁架单元是空间结构构建中较常见的实践之一。尽管这些空心球形接头可能会因施加的载荷而变形,但在分析和设计中通常会忽略这些变形以及对构件轴向力的最终影响。这项工作是对窝关节变形能力对空间网格结构行为的影响的研究。在这里,通过在实际承窝接头上进行的一系列双轴载荷测试获得的载荷-变形关系已用于表示它们在几种有限元分析模型中的行为。这些模型已经使用专用的子结构有限元分析程序进行了分析,该程序开发用于说明完整的几何和材料非线性行为。已经证明,在许多情况下,节点的可变形性会导致内部构件力,整体结构刚度以及结构的极限载荷行为发生重大变化。

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