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Experimental study on the behavior of steel-concrete composite arch ribs to combined bending and compression

机译:钢-混凝土组合拱肋受弯与受压性能的试验研究

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In order to achieve accelerated and less expensive construction for arch bridges, optimized steel composite sections with variations of material and dimensions were proposed for the arch ribs. The proposed arch rib is made of fabricated steel tubular section with concrete fill or reinforced concrete topping based on stress distribution. An important advantage of this composite section is that a base arch frame of steel tubular section can be erected vertically and rotated to closure in limited workspace and within a short period. A particular composite with hollow steel box and reinforced concrete topping is used for combined compression and positive bending in the mid-span region, which is quarter-spans from the crown, to reduce the self-weight and cost. An in-depth understanding of the load carrying characteristics theoretically and experimentally can be very crucial for the design optimization. The objective of this research is to study experimentally the behavior, failure mechanism and performance of this composite section. The test includes the simulation of pure bending with lateral load, and pure compression with central axial loading as well as combined compression and bending with eccentric axial loading. This paper presents the experimental results of a series of test specimen tested under different load conditions. The results demonstrated that the proposed composite section can meet both strength needs and performance requirements. The composite section achieved its ultimate design strength with fully developed concrete compressive strength and steel tensile strength, without premature failures such as crushing or cracking of concrete or buckling of steel.
机译:为了实现拱桥的加速和廉价建造,提出了具有不同材料和尺寸的优化钢复合型材的拱肋。拟议的拱肋由钢管截面制成,根据应力分布采用混凝土填充或钢筋混凝土浇筑。这种复合型材的一个重要优点是,钢管型材的基础拱形框架可以垂直竖立,并可以在有限的工作空间内和短时间内旋转至封闭状态。带有空心钢箱和钢筋混凝土顶层的特殊复合材料用于在距跨度为冠的四分之一跨度的中跨区域中进行组合压缩和正弯,以减少自重和成本。从理论上和实验上深入了解承载特性对于设计优化至关重要。这项研究的目的是通过实验研究该复合截面的行为,失效机理和性能。该测试包括模拟具有侧向载荷的纯弯曲,具有中心轴向载荷的纯压缩以及具有偏心轴向载荷的组合压缩和弯曲。本文介绍了在不同载荷条件下测试的一系列试样的实验结果。结果表明,所提出的复合材料截面既可以满足强度要求,又可以满足性能要求。复合截面通过充分发挥混凝土的抗压强度和钢的抗拉强度达到了最终的设计强度,而不会发生诸如混凝土的压碎或开裂或钢的屈曲的过早破坏。

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