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The use of stainless steel in structures

机译:在结构中使用不锈钢

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The past 15 years have seen the introduction or major revision of structural stainless steel design codes throughout the world, and at the same time, interest in the use of stainless steel in construction has been accelerating. Historically the high initial material cost of stainless steel has limited its use primarily to specialist and prestige applications. However, the emergence of design codes, a better awareness of the additional benefits of stainless steel and a transition towards sustainability are bringing more widespread use into conventional structures. Although a number of similarities between stainless steel and ordinary carbon steel exist, there is sufficient diversity in their physical properties to require separate treatment in structural design. In addition to the straightforward differences in basic material properties (such as Young's modulus and yield strength), further fundamental differences exist, such as the nature of the stress-strain curve and the material's response to cold-work and elevated temperatures; these have implications at ultimate, serviceability and fire limit states. This paper describes the use of stainless steel as a structural material, discusses current structural design provisions, reviews recent research activities and highlights the important findings and developments.
机译:在过去的15年中,全世界已经开始采用或主要修改结构不锈钢设计规范,与此同时,对在建筑中使用不锈钢的兴趣也在不断增长。从历史上看,不锈钢高昂的初始材料成本将其用途主要限制在专业和信誉应用中。然而,设计规范的出现,人们对不锈钢的更多益处的更好认识以及向可持续性的过渡,正在使传统结构得到更广泛的使用。尽管不锈钢和普通碳钢之间存在许多相似之处,但它们的物理性质存在足够的差异,因此需要在结构设计中进行单独处理。除了基本材料特性(例如杨氏模量和屈服强度)的直接差异外,还存在其他基本差异,例如应力-应变曲线的性质以及材料对冷作和高温的响应;这些对极限,适用性和着火极限状态有影响。本文介绍了不锈钢作为结构材料的用途,讨论了当前的结构设计规定,回顾了最近的研究活动并强调了重要的发现和发展。

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