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Experimental study on ultra-lightweight-concrete encased cold-formed steel structures Part I: Stability behaviour of elements subjected to bending

机译:超轻混凝土包裹冷弯钢结构的试验研究第一部分:受弯构件的稳定性

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In the field of structural engineering the design of cost efficient structures is highly important. This led to the development of cold-formed steel structures (CFS). An advanced CFS structure is introduced in this paper, which uses a special type of polystyrene aggregate concrete (PAC) as bracing material. This material has beneficial insulating and fire protection properties, which makes it a reasonable choice for residential buildings. An experimental program was performed, to gain information on the flexural and axial behaviour of PAC-braced CFS elements and panels. Both unbraced and braced members were tested to gain information on increment of load-bearing capacity. Several different element sizes were used to be able to investigate the different stability failure modes (i.e. local, distortional and global). Results showed that PAC was able to restrain the global and distortional buckling modes of steel elements, thus providing "full bracing" in most practical cases. These results are introduced in two papers (Part I and II), detailing the failure modes, load increments and the effect of composite action. In this paper - Part I - the background and the results of bending tests are presented, and the experiments on the compression elements are detailed in Part II [1]. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在结构工程领域,设计经济高效的结构非常重要。这导致了冷弯钢结构(CFS)的发展。本文介绍了一种先进的CFS结构,该结构使用一种特殊类型的聚苯乙烯骨料混凝土(PAC)作为支撑材料。这种材料具有有益的绝缘和防火性能,使其成为住宅建筑的合理选择。执行了一个实验程序,以获取有关PAC支撑的CFS元件和面板的弯曲和轴向行为的信息。对无支撑构件和支撑构件都进行了测试,以获取有关承载能力增加的信息。使用了几种不同的元件尺寸来研究不同的稳定性失效模式(即局部,变形和整体)。结果表明,PAC能够抑制钢构件的整体屈曲和变形屈曲模式,从而在大多数实际情况下提供“完全支撑”。在两篇论文(第一部分和第二部分)中介绍了这些结果,详细介绍了失效模式,载荷增量和复合作用的影响。本文第一部分介绍了弯曲试验的背景和结果,第二部分详细介绍了压缩元件的实验[1]。 (C)2016 Elsevier Ltd.保留所有权利。

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