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Experimental and numerical studies of stainless steel angle-to-plate connections

机译:不锈钢角板连接的实验和数值研究

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This paper presents experimental and numerical studies of stainless steel angle-to-plate connections failing by net section fracture. Tension tests were conducted on 16 austenitic stainless steel angle-to-plate connections, with each consisting of an equal-leg or unequal-leg angle section member bolted to gusset plates by one leg. The specimens were designed with different angle section sizes, number of bolt holes and connection lengths. The key test observed results, including the load–elongation curves as well as the failure loads and modes, were fully reported. The strain distribution at critical cross-sections and the effects of connection length, out-of-plane eccentricity and in-plane eccentricity on net section efficiency were discussed. The experimental programme was supplemented by a numerical modelling programme, where finite element models were firstly developed and validated against the test results and afterwards adopted to perform parametric studies to generate further numerical data. On the basis of the test and numerical data, the accuracy of the design rules for stainless steel angle-to-plate connections failing by net section fracture, as set out in the European code and American specification, was assessed. The assessment results revealed that the European code leads to excessively conservative and scattered failure load predictions, while the American specification yields unsafe failure load predictions. Therefore, an improved design approach was proposed and shown to provide substantially improved predictions of failure load over the design codes; the reliability of the proposed design approach was also demonstrated by statistical analyses. Besides, the existing codified and proposed design methods for carbon steel angle-to-plate connections were also assessed for their applicability to stainless steel angle-to-plate connections. It was found that the method specified in the American specification for carbon steel angle-to-plate? connections can be safely extended to cover the design of their stainless steel counterparts.
机译:本文介绍了不锈钢角板连接因网截面断裂而失效的实验和数值研究。对 16 个奥氏体不锈钢角板连接件进行了拉伸测试,每个连接件由一个等腿或不等腿角截面构件组成,该构件通过一条腿用螺栓固定在角撑板上。试件设计有不同的角度截面尺寸、螺栓孔数和连接长度。完整报告了关键的测试观察结果,包括载荷-伸长率曲线以及破坏载荷和模式。讨论了临界截面处的应变分布以及连接长度、面外偏心距和面内偏心距对截面净截面效率的影响。实验程序由数值模拟程序补充,首先根据测试结果开发并验证有限元模型,然后采用有限元模型进行参数研究以生成进一步的数值数据。根据试验和数值数据,评估了欧洲规范和美国规范中规定的因网截面断裂而失效的不锈钢角板连接设计规则的准确性。评估结果显示,欧洲规范导致失效载荷预测过于保守和分散,而美国规范则产生不安全的失效载荷预测。因此,提出了一种改进的设计方法,并证明该方法在设计规范中提供了对失效载荷的大幅改进预测;统计分析也证明了所提出的设计方法的可靠性。此外,还评估了现有编纂和提出的碳钢角板连接设计方法对不锈钢角板连接的适用性。发现美国规范中规定的碳钢角板的方法?连接可以安全地扩展,以覆盖不锈钢对应物的设计。

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