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Finite element analysis and design of crest-fixed trapezoidal steel claddings with wide pans subject to pull-through failures

机译:易受穿通破坏影响的宽底锅固定梯形钢包层的有限元分析和设计

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摘要

Crest-fixed trapezoidal steel claddings made of thin, high strength steels often suffer from local pull-through failures at their screw connections during high wind events. Loss of claddings often leads to a progressive collapse of the entire building. At present the design of these cladding systems is mainly based on laboratory testing. Since the local pull-through failures in these less ductile high strength steel claddings are often initiated by transverse splitting at the fastener holes, analytical studies have not been able to determine the pull-through failure loads accurately. However, an appropriate splitting/fracture criterion has been developed recently using a series of large scale experiments of crest-iked steel claddings. A finite element model has then been developed for trapezoidal steel cladding with wide pans that included the new splitting criterion and other advanced features including geometric imperfections, residual stresses, buckling effects, contact modelling and hyperelastic behaviour of neoprene washers. A series of parametric studies considering the effects of material properties and geometric parameters of trapezoidal claddings was undertaken using finite element analysis. Design formulae for the local failure loads were then derived for design and optimization purposes. This paper presents the details of the numerical study, the results and design recommendations.
机译:用薄的高强度钢制成的梯形固定梯形钢包层经常在强风天气时在其螺钉连接处遭受局部拉拔故障。失去覆层通常会导致整个建筑物逐渐倒塌。目前,这些覆层系统的设计主要基于实验室测试。由于这些延展性较差的高强度钢覆层中的局部拉拔破坏通常是由紧固件孔处的横向劈裂引起的,因此分析研究无法准确确定拉拔破坏的载荷。但是,最近使用一系列带有顶冠的钢覆层的大型实验开发了一种合适的劈裂/断裂准则。然后,为宽底盘的梯形钢熔覆层开发了一个有限元模型,其中包括新的劈裂准则和其他高级特征,包括几何缺陷,残余应力,屈曲效应,接触模型和氯丁橡胶垫圈的超弹性行为。使用有限元分析进行了一系列考虑材料特性和梯形包层几何参数影响的参数研究。然后,出于设计和优化目的,导出了局部失效载荷的设计公式。本文介绍了数值研究的细节,结果和设计建议。

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