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Web bearing capacity of unlipped cold-formed ferritic stainless steel channels with perforated web subject to end-two-flange (ETF) loading

机译:带有两端腹板(ETF)载荷的带孔腹板的无唇冷弯铁素体不锈钢槽钢的腹板承载力

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In this paper, laboratory and numerical evaluations on the web bearing capacity of unlipped cold-formed ferritic stainless steel channels are described. The channels considered have circular perforations in the web and are loaded under the end-two-flange (ETF) load case. A total of 387 results comprising 27 laboratory and 360 numerical results are presented. A nonlinear quasi-static finite element (FE) model was developed for the numerical investigation. An extensive parametric study is described to determine web bearing capacity reduction factors for different sizes of circular web perforations and cross-section dimensions; the circular web perforations are either centred or offset to the load and reaction plates. It is noted that no cold-formed stainless steel standard provides capacity reduction factors for any end-two-flange load case. The capacity reduction factor equations are first compared to reduction factors previously recommended for lipped cold-formed stainless steel channels. It is found that these existing equations are unreliable and unconservative for unlipped channels by as much as 11%. The laboratory investigation shows that, for the case of plain unlipped channels (i.e. without web perforations), the ASCE Specification (SEI/ASCE 8-02) is conservative by as much as 14%. From both laboratory and finite element results, web bearing capacity design equations are proposed for both sections, with and without perforations in the web. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,描述了对唇形冷弯铁素体不锈钢槽钢的腹板承载力的实验室和数值评估。所考虑的通道在腹板中具有圆形孔眼,并在两端二法兰(ETF)载荷情况下加载。总共提供了387个结果,包括27个实验室结果和360个数字结果。建立了非线性准静态有限元(FE)模型用于数值研究。描述了广泛的参数研究,以确定不同尺寸的圆形腹板穿孔和横截面尺寸的腹板承载力降低系数;圆形腹板孔相对于负载板和反作用板居中或偏移。需要注意的是,没有冷弯的不锈钢标准提供任何端二法兰负载情况下的容量降低因子。首先将容量减少系数方程式与先前推荐的唇形冷弯不锈钢通道的减少系数进行比较。已经发现,这些现有方程对于不唇边的通道而言是不可靠且不保守的,多达11%。实验室调查表明,对于平直的无通道通道(即无网孔),ASCE规范(SEI / ASCE 8-02)保守了14%。从实验室结果和有限元结果出发,提出了两个截面的腹板承载力设计方程,腹板中有无穿孔。 (C)2017 Elsevier Ltd.保留所有权利。

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