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Applications, Behaviour and Design of Composite Steel-Concrete Structures

机译:钢-混凝土组合结构的应用,性能及设计

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The behaviour of composite steel-concrete beams subjected to pure flexure and the presence of flexure and shear is fairly well understood and provisions do exist in international codes of practice for their design, however in most instances the influence of the concrete slab is not included in the strength design of the composite beam in shear. Combined internal actions including the presence of torsion and flexure have also been considered of late. These actions combine to occur in edge beams and curved composite beams and thus are of significant practical interest. Of increasing interest has become the presence of axial force and flexure in composite beams. These internal actions need to be considered in the design of raking beams of stadia, elevated approach spans for bridges and interchanges and in the design of integral abutment bridges and cable stayed bridges. Furthermore, composite beams in floor systems for braced multi-storey buildings are often required to resist axial force, flexure and shear force. This paper considers the effects of the presence of axial force in conventional composite beams. The effects of different forms of axial force and flexure combinations are considered in this paper. An analytical treatment, experiments and design approaches are given in this paper which is useful for structural engineers. Furthermore research in this area is also discussed. This paper will also present the results of an extensive experimental series to study the behaviour of high performance steel sections subjected to transverse impact loads which are able to simulate either a collision or blast. The experimental program has considered both mild structural steel and stainless steel hollow sections both filled and unfilled being tested. The purpose of the tests was to identify the potential advantages of using concrete infill to increase the energy absorption capability of steel hollow sections.
机译:钢-混凝土组合梁在纯弯曲作用下的行为以及弯曲和剪切的存在已为人们所熟知,国际设计规范中确实存在有关其设计的规定,但是在大多数情况下,混凝土板的影响并未包括在内。组合梁的抗剪强度设计。最近还考虑了内部组合动作,包括扭转和弯曲的存在。这些作用结合在一起发生在边缘梁和弯曲的复合梁中,因此具有重大的实际意义。越来越受到关注的是复合梁中存在轴向力和挠曲性。这些内部作用需要在体育场的前倾横梁的设计,桥梁和立交桥的高进近跨度以及整体式桥台和斜拉桥的设计中加以考虑。此外,用于支撑多层建筑物的地板系统中的复合梁经常需要抵抗轴向力,挠曲和剪切力。本文考虑了传统复合梁中存在轴向力的影响。本文考虑了不同形式的轴向力和挠曲组合的影响。本文给出了分析处理,实验和设计方法,这些方法对结构工程师很有用。此外,还讨论了该领域的研究。本文还将介绍一个广泛的实验系列的结果,以研究高性能钢型材在承受横向冲击载荷时的行为,这些载荷能够模拟碰撞或爆炸。实验程序考虑了填充和未填充的低碳结构钢和不锈钢空心型材。测试的目的是确定使用混凝土填充物来提高空心钢截面的能量吸收能力的潜在优势。

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