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Shear design recommendations for stainless steel plate girders

机译:不锈钢板梁的剪力设计建议

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The behaviour and design of stainless steel plate girders loaded in shear is investigated in this paper. A review of existing methods for the design of stainless steel plate girders, including codified provisions, is first presented. A database of thirty-four experiments carried out on austenitic, duplex and lean duplex stainless steel plate girders is then reported, and used to assess the current shear resistance design equations from Eurocode 3: Part 1.4 and Eurocode 3: Part 1.5 and the recent proposals from the literature. The comparisons clearly indicate that the design provisions of Eurocode 3: Part 1.4 are conservative and that improved results can be achieved by applying Eurocode 3: Part 1.5 and the proposed expressions of Estrada et al. However, yet further improvements are possible and, based on the available structural performance data, revised design expressions for the calculation of the ultimate shear capacity of stainless steel plate girders suitable for incorporation into future revisions of Eurocode 3: Part 1.4 have been proposed and statistically verified. Unlike the current provisions of Eurocode 3: Part 1.4, the design rules proposed herein differentiate between rigid and non-rigid end posts, and, offer enhancements in shear buckling capacity of around 10%.
机译:研究了剪力作用下不锈钢板梁的性能和设计。首先介绍了现有的设计方法,包括编纂的规定。然后报告了在奥氏体,双相和贫双相不锈钢板梁上进行的三十四个实验的数据库,并用于评估欧洲规范3:第1.4部分和欧洲规范3:第1.5部分以及最新建议中的当前抗剪设计方程式。从文学上。比较清楚地表明,欧洲规范3:第1.4部分的设计规定是保守的,并且可以通过应用欧洲规范3:第1.5部分和Estrada等人的拟议表达来获得改进的结果。但是,还有可能进行进一步的改进,并根据现有的结构性能数据,提出了用于计算不锈钢板梁极限抗剪承载力的修正设计表达式,该表达式适用于纳入欧洲规范3的未来修订版本,并在统计上进行了统计已验证。与现行的《欧洲规范3:第1.4部分》不同,本文提出的设计规则将刚性和非刚性端柱区分开来,并提高了剪切屈曲能力约10%。

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