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Experimental investigation and modelling of T-stubs undergoing large displacements

机译:大型位移的T型TUPS的实验研究与建模

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This paper investigates the development of second (2nd) order effects, arising from geometric and material nonlinearities of T-stubs bolted to a rigid support, through a combination of experimental, numerical and analytical approaches. Experimental data is presented for a broad range of T-stub geometries, designed to ensure that significant 2nd order effects always develop, that will complement the existing library of limited test results. Finite element models, incorporating combined tensile (ductile) and shear damage initiation, evolution and failure in both the flange and bolt, are also developed to elucidate how key geometric/material parameters influence the resistance and ductility of T-stubs undergoing large displacement. It will be shown that the restraining effect from the bolt is integral to the activation of catenary action in the flange and the development of a second hardening branch in the tensile response, leading to identification of two new modes of failure that are not currently considered in classical theory or by EC3 (Part 1.8). A mechanical model is formulated to identify the key geometric and material parameters controlling the initiation, and development, of the second hardening branch. Finally, a criterion is proposed to estimate the critical displacement from when 2nd order effects become active.(c) 2021 Elsevier Ltd. All rights reserved.
机译:本文通过实验性,数值和分析方法的组合,调查了由螺栓固定到刚性支撑件的几何和材料非线性产生的第二(第二)次秩序效应的发展。实验数据介绍了广泛的T-Stub几何形状,旨在确保显着的第二顺序效应总是开发,这将补充现有的有限测试结果库。还开发了有限元模型,包括组合拉伸(延展岩)和剪切损伤启动,进化和失败,在法兰和螺栓中,以阐明关键几何/材料参数如何影响遭受大移位的T型抗液体的电阻和延展性。将表明,来自螺栓的抑制效果是对凸缘中腺相关作用的激活的一体,并且在拉伸反应中的第二个硬化分支的发展,导致识别目前未考虑的两种新的失败模式经典理论或EC3(第1.8部分)。配制机械模型以识别第二硬化分支的启动和开发的关键几何和材料参数。最后,提出了一个标准来估计第二顺序效应激活的临界位移。(c)2021 Elsevier Ltd.保留所有权利。

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