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Finite element investigation of shear failure of lean duplex stainless steel plate girders

机译:贫双相不锈钢板梁剪切破坏的有限元研究

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摘要

The use of duplex stainless steel material has gained popularity in the last two decades thanks to its nature that combines well the advantages of both austenitics and carbon steel materials. The duplex grades offer a combination of higher strength than austenitics in addition to a great majority of carbon steels with similar or superior corrosion resistance. However, high nickel prices have more recently led to a demand for lean duplexes with low nickel content, such as grade EN 1.4162. Wide-ranging work is needed to include the lean duplex grade EN 1.4162, into design standards such as EN 1993-1-4. Accordingly, a finite element modelling for full-size lean duplex stainless steel plate girders of non-rigid end stiffeners of Grade EN 1.4162 is presented in this paper. The paper is principally concerned with shear failure mechanism characteristics of this type of plate girders, which is not yet investigated. The ABAQUS 6.6 programme, as a finite element package, is used in the current work. The lean duplex stainless steel material is simulated here based on an accepted stainless steel material model available in the literature. A number of transversely stiffened 1-section plate girders having equal depth of 1000 mm in span of 4 m is considered and parametric studies regarding flange width-to-web depth ratio, flange-to-web thickness ratio and web plate slenderness are carried out. However, new conclusions on shear strength of lean duplex stainless steel plate girders are presented.
机译:在过去的二十年中,由于双相不锈钢材料的特性很好地结合了奥氏体和碳钢材料的优点,因此双相不锈钢材料的使用已广受欢迎。除了绝大多数具有相似或优越的耐腐蚀性能的碳钢外,双相不锈钢还提供比奥氏体更高的强度。然而,近来镍价格高涨导致对镍含量低的贫化双相钢的需求,例如EN 1.4162级。需要将EN 1.4162精益双相钢等级纳入设计标准(例如EN 1993-1-4)中,需要进行广泛的工作。因此,本文提出了EN 1.4162级非刚性端部加劲肋的全尺寸精益双相不锈钢板梁的有限元建模。本文主要涉及这种类型的板梁的剪切破坏机理特性,目前尚未进行研究。当前工作中使用了ABAQUS 6.6程序作为有限元软件包。此处根据文献中提供的公认的不锈钢材料模型来模拟贫双相不锈钢材料。考虑了许多在4 m跨度内具有等于1000 mm深度的横向加劲的1型截面板梁,并进行了有关翼缘宽度与腹板深度之比,翼缘与腹板厚度之比和腹板细长度的参数研究。然而,提出了关于贫钢双相不锈钢板梁抗剪强度的新结论。

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