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Flexural Strength of cold-formed steel built-up composite beams with rectangular compression flanges

机译:具有矩形压缩法兰的冷成型钢的弯曲强度

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The past research on cold-formed steel (CFS) flexural members have proved that rectangular hollow flanged sections perform better than conventional I-sections due to their higher torsional rigidity over the later ones. However, CFS members are vulnerable to local buckling, substantially due to their thin-walled features. The use of packing, such as firmly connected timber planks, to the flanges of conventional CFS lipped I-sections can drastically improve their flexural performance as well as structural efficiency. Whilst several CFS composites have been developed so far, only limited packing materials have been tried. This paper presents a series of tests carried out on different rectangular hollow compression flanged sections with innovative packing materials. Four-point flexural tests were carried out to assess the flexural capacity, failure modes and deformed shapes of the CFS composite beam specimens. The geometric imperfections were measured and reported. The North American Specifications and Indian Standard for cold-formed steel structures were used to compare the design strengths of the experimental specimen. The test results indicate clearly that CFS rectangular 'compression' flanged composite beams perform significantly better than the conventional rectangular hollow flanged CFS sections.
机译:已经证明了对冷成型钢(CFS)弯曲构件的研究证明,由于其在后来的扭转刚度较高,矩形空心凸缘部分比常规I段更好地执行。然而,CFS成员容易受到局部屈曲的影响,基本上是由于它们的薄壁特征。使用填料(例如牢固连接的木板)到传统CFS的凸缘的爆发I-部分可以大大提高它们的抗弯性能以及结构效率。虽然到目前为止已经开发了几种CFS复合材料,但仅尝试了有限的包装材料。本文介绍了一系列在不同的矩形空心压缩法兰部分进行的测试,具有创新的包装材料。进行了四点弯曲试验,以评估CFS复合梁样本的弯曲能力,故障模式和变形形状。测量并报告几何缺陷。北美规格和印度的冷成型钢结构标准用于比较实验标本的设计强度。测试结果清楚地表明,CFS矩形'压缩'凸缘复合梁比传统的矩形空心法兰CFS部分显着更好地执行。

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