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Experimental Study of Cold-Formed Ferritic Stainless Steel Hollow Sections

机译:冷弯铁素体不锈钢空心型材的试验研究

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Stainless steel is gaining increasing use in construction because of its durability, favorable mechanical properties, and aesthetic appearance, with the austenitic grades being the most commonly used. Austenitic stainless steels have a high nickel content (8-11 %), resulting in high initial material cost and significant price fluctuations; this, despite its desirable properties, represents a considerable disadvantage in terms of material selection. Ferritic stainless steels, having no or very low nickel content, may offer a more viable alternative for structural applications, reducing both the level and variability of the initial material cost while maintaining adequate corrosion resistance. There is currently limited information available on the structural performance of this type of stainless steel. Therefore, to overcome this limitation, a series of material, cross section, and member tests have been performed, covering both the standard EN 1.4003 grade (similar to the chromium weldable structural steel 3Cr12) and the EN 1.4509 grade (441), which has improved weldability and corrosion resistance. In total, 20 tensile coupon tests, 16 compressive coupon tests, eight stub column tests, 15 flexural buckling tests, and eight in-plane bending tests were carried out. Precise measurements of the geometric properties of the test specimens, including the local and global geometric imperfections, were also made. The experimental results are used to assess the applicability of the current European (EN 1993-1-4) and North American (SEI/ASCE-8) provisions to ferritic stainless steel structural components. In addition, the relative structural performance of ferritic stainless steel to that of more commonly used stainless steel grades is also presented, showing ferritic stainless steel to be an attractive choice for structural applications.
机译:不锈钢由于其耐用性,良好的机械性能和美观的外观而越来越多地用于建筑领域,其中最常用的是奥氏体不锈钢。奥氏体不锈钢的镍含量高(8-11%),从而导致高昂的原材料成本和巨大的价格波动。尽管具有理想的性能,但这在材料选择方面仍表现出相当大的缺点。不含镍或镍含量极低的铁素体不锈钢可以为结构应用提供更可行的替代方案,既降低初始材料成本的水平和可变性,又保持足够的耐腐蚀性。目前,有关这种不锈钢的结构性能的信息有限。因此,为克​​服此限制,已进行了一系列材料,横截面和构件测试,涵盖了标准EN 1.4003级(类似于3Cr12铬焊接结构钢)和EN 1.4509级(441),改善的可焊性和耐腐蚀性。总共进行了20次拉伸试样试验,16次压缩试样试验,8个短柱试验,15个挠曲屈曲试验和8个面内弯曲试验。还精确测量了试样的几何特性,包括局部和整体的几何缺陷。实验结果用于评估当前的欧洲(EN 1993-1-4)和北美(SEI / ASCE-8)规定对铁素体不锈钢结构部件的适用性。此外,还介绍了铁素体不锈钢相对于更常用的不锈钢等级的相对结构性能,表明铁素体不锈钢是结构应用中的一种有吸引力的选择。

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