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Structural response of concrete-filled elliptical steel hollow sections under eccentric compression

机译:椭圆形空心钢管混凝土偏心受压下的结构响应

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me purpose or this research is to examine the behaviour or elliptical concrete-filled steel tubular stub columns under a combination of axial force and bending moment. Most of the research carried out to date involving concrete-filled steel sections has focussed on circular and rectangular tubes, with each shape exhibiting distinct behaviour. The degree of concrete confinement provided by the hollow section wall has been studied under pure compression but remains ambiguous for combined compressive and bending loads, with no current design provision for this loading combination. To explore the structural behaviour, laboratory tests were carried out using eight stub columns of two different tube wall thicknesses and applying axial compression under various eccentricities. Moment-rotation relationships were produced for each specimen to establish the influence of cross-section dimension and axis of bending on overall response. Full 3D finite element models were developed, comparing the effect of different material constitutive models, until good agreement was found. Finally, analytical interaction curves were generated assuming plastic behaviour and compared with the experimental and finite element results. Ground work provided from these tests paves the way for the development of future design guidelines on the member level.
机译:目的或本研究的目的是在轴向力和弯矩共同作用下检查椭圆钢管混凝土短柱的性能。迄今为止,涉及填充混凝土型钢的大多数研究都集中在圆形和矩形管上,每种形状都表现出不同的行为。已经研究了空心截面墙在纯压缩状态下提供的混凝土约束程度,但对于组合的压缩和弯曲载荷仍然是模棱两可的,目前没有针对这种载荷组合的设计规定。为了探究结构特性,我们使用了八根不同壁厚的短管柱,并在各种偏心率下施加轴向压力,进行了实验室测试。产生每个样品的力矩-旋转关系,以建立横截面尺寸和弯曲轴对整体响应的影响。开发了完整的3D有限元模型,比较了不同材料的本构模型的效果,直到找到了良好的一致性。最后,假设塑性行为生成分析相互作用曲线,并将其与实验和有限元结果进行比较。这些测试提供的基础工作为会员级别上未来设计指南的开发铺平了道路。

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