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Numerical analysis and design of thin-walled RECFST stub columns under r axial compression

机译:r轴向压缩薄壁RECFST短柱的数值分析与设计

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Round-ended elliptical concrete-filled steel tube (RECFST) column is a novel type of composite member which is gradually used in engineering practices (i.e. piers and arches) because of its low flow resistance coefficient and reasonable distribution of major-minor axis. However, little attentions to the structural behavior of RECFST columns have been paid. This paper makes an attempt to conduct a numerical analysis on the axial compressive performance of RECFST stub columns. Firstly, an equivalent constitutive model for the confined round-ended concrete of the RECFST column was proposed. Following this, a nonlinear finite element (FE) modeling considering contact interactions of the type of thin-walled CFST column was developed and verified by the test results in terms of axial load (N) - longitudinal shortening (8) curves and failure modes. The influence of extensive parameters, including diameter-to-thickness ratio, aspect ratio and cross-section area etc., on the performance of thin-walled RECFST stub columns under axial compression was estimated as well. The analytical results demonstrated that the axial compressive strength of thin-walled RECFST stub columns was substantially improved with the increase of the steel strength, the concrete strength and the cross-section area, and the trend of the N-S curves was obviously affected by the confinement factor. Finally, two simplified design methods to predict the axial compressive strength of thin-walled RECFST stub columns were established on the basis of the simple superposition approach and the unified theory. The studies may provide a considerable reference for designing this type of structures in engineering practice.
机译:圆端椭圆钢管混凝土(RECFST)柱是一种新型的复合构件,由于其低流动阻力系数和长短轴的合理分布而逐渐用于工程实践(即墩和拱)中。但是,很少关注RECFST色谱柱的结构行为。本文尝试对RECFST短柱的轴向压缩性能进行数值分析。首先,提出了RECFST柱密闭圆端混凝土的等效本构模型。随后,开发了考虑薄壁CFST柱类型的接触相互作用的非线性有限元(FE)模型,并通过轴向载荷(N)-纵向缩短(8)曲线和破坏模式的测试结果进行了验证。还估计了直径,厚度比,纵横比和横截面积等广泛参数对薄壁RECFST短柱在轴向压缩下的性能的影响。分析结果表明,薄壁RECFST短管柱的轴向抗压强度随着钢强度,混凝土强度和截面面积的增加而显着提高,并且NS曲线的趋势明显受到约束的影响。因子。最后,在简单叠加方法和统一理论的基础上,建立了两种简化的薄壁RECFST短管柱轴向抗压强度预测设计方法。这些研究可为工程实践中设计此类结构提供大量参考。

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