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Mechanical performance of concrete-filled square steel tube stiffened with PBL subjected to eccentric compressive loads: Experimental study and numerical simulation

机译:偏心压缩载荷下用PBL加固的方钢管混凝土力学性能:试验研究与数值模拟

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摘要

This paper describes an experimental study on the flexural and eccentric compressive behavior of concrete-filled square steel tube (CFSST) beam-columns stiffened with PBL stiffeners. Three types of CFSST beam-columns were fabricated and tested under the flexural moment and eccentric compressive load. Among the three types of columns, the two types of columns were strengthened with the PBL and steel plate stiffeners; the other type of columns was not strengthened. In addition, extensive finite element analyses (FEA) were carried out to evaluate the stress distribution. Flexural test results show that failure modes of specimens without stiffeners were different from specimens with the PBL or steel plate stiffeners. The results also demonstrate the distribution of cracks in the concrete was affected by stiffeners and the columns with the PBL stiffeners have the most uniformed crack distributions. The capacity improved by the PBL stiffeners was insignificant. However, the flexural stiffness of the specimen stiffened with the PBL stiffeners was about 20% larger than the unstiffened specimen. Eccentric compressive load test results show the capacity of specimen with the PBL stiffeners was 6.95% larger than the unstiffened specimen. The eccentric compressive capacity decreased with the increase of the eccentricity ratio or slenderness ratio. FEA results show that stiffeners can effectively improve the mechanical behavior of CFSST specimens under bending and eccentric compressive loads.
机译:本文描述了用PBL加强筋加固的方钢管混凝土(CFSST)梁柱的弯曲和偏心压缩性能的试验研究。制作了三种类型的CFSST梁柱,并在弯曲力矩和偏心压缩载荷下进行了测试。在三种类型的柱子中,两种类型的柱子都通过PBL和钢板加强筋进行了加固。其他类型的柱子没有得到加强。此外,进行了广泛的有限元分析(FEA)以评估应力分布。弯曲测试结果表明,没有加强筋的试样的破坏模式与带有PBL或钢板加强筋的试样的破坏模式不同。结果还表明,混凝土中的裂缝分布受加强筋的影响,带有PBL加强筋的柱的裂缝分布最均匀。 PBL加强筋提高的能力微不足道。但是,用PBL加强筋加强的试样的弯曲刚度比未加强的试样大20%。偏心压缩载荷测试结果表明,带有PBL加强筋的样品的容量比未加筋的样品大6.95%。偏心压缩能力随偏心率或细长率的增加而减小。有限元分析结果表明,加劲肋可以有效地改善CFSST试样在弯曲和偏心压缩载荷下的力学性能。

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