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Structural mechanics characterization of steel intermeshed connection using nonlinear finite element analysis

机译:使用非线性有限元分析的钢啮合连接的结构力学表征

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The aim of the present study is to develop insights into the structural performance of a recently developed ?intermeshed? steel connection, which transfers loads mainly through direct contact rather than by welds or bolts. This investigation was conducted through a step-by-step state assessment of the intermeshed connection subjected to multiple scenarios of gravity loading and by use of a nonlinear finite element platform. Implementation of the intermeshed connection would cause a discontinuity in the beam, so this paper addresses concerns regarding the load-transfer mechanisms and failure modes for these connections. The finite element simulations were performed in Abaqus, which is capable of handling material and geometrical nonlinearity, as well as the contact between individual surfaces. In order to verify the accuracy of these simulations, the numerical results were compared with experimental data from four physical tests. Finally, some important factors of influence such as connection segments sizes, lateral constraint, support conditions, and failure modes were also investigated through numerical analysis. The results of finite element analysis on different prototypes of steel intermeshed connection showed that the specimens with this connection provided sufficient ductility and resistance to meet design requirements.
机译:本研究的目的是开发洞察最近开发的结构性能?相互颠覆的?钢结连接,主要通过直接接触而不是焊接或螺栓来传输负载。通过对多个重力负荷的逐步的连接进行逐步的状态评估进行该研究,并通过使用非线性有限元平台。迭代连接的实现将导致光束中的不连续性,因此本文解决了对这些连接的负载转移机制和故障模式的担忧。有限元模拟在ABAQUS中进行,其能够处理材料和几何非线性,以及各个表面之间的接触。为了验证这些模拟的准确性,将数值结果与来自四个物理测试的实验数据进行比较。最后,通过数值分析研究了诸如连接段大小,横向约束,支持条件和失效模式的一些重要影响因素。有限元分析对钢颠达连接不同原型的结果表明,具有这种连接的标本提供了足够的延展性和抗性,以满足设计要求。

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