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Stress-strain relationship of recycled self-compacting concrete filled steel tubular column subjected to eccentric compression

机译:再生自密实钢管混凝土柱偏心受压应力-应变关系

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摘要

As a typical compression member,the concrete-filled steel tube has been widely used in civil engineering structures.However,little research on recycled self-compacting concrete flled circular steel tubular(RSCCFCST)columns subjected to eccentric load was reported.In this study,21 specimens were designed and experimental studies on the stress-strain relationship of were carried out to study the mechanical behaviors.Recycled coarse aggregate replacement ratio,concrete strength grade,length to diameter ratio and eccentric distance of specimens were considered as the main experimental parameters to carry out eccentric compression tests.The corresponding stress-strain relationship curves were used to analyze the influence of concerned parameters on ecentric load-bearing capacity of RSCCFCST columns.The experimental results show that the strain of the eccentric compression stress-strain curves increase with the increase of recycled coarse aggregate replacement ratio and concrete strength grade.With increase of eccentric distance,the ductility of specimens increases while the bearing capacity decreases.Moreover,a phenomenological model of RSCCFCST columns is proposed,which exhibits versatile ability to capture the process during loading.The present study is expected to further understanding the behaviors and to provide guidance of RSCCFCST columns in design and engineering applications.
机译:钢管混凝土作为一种典型的受压构件已被广泛应用于土木工程结构中。然而,关于偏心荷载作用下的再生自密实混凝土钢管(RSCCFCST)柱的研究却很少。设计了21个试件,进行了试件的应力-应变关系的实验研究,研究了再生粗集料的置换率,混凝土强度等级,长径比和偏心距是试验的主要实验参数。进行了偏心压缩试验。利用相应的应力-应变关系曲线分析了相关参数对RSCCFCST柱的偏心承载力的影响。实验结果表明,偏心压缩应力-应变曲线的应变随压力的增加而增大。增加再生粗骨料替代率和混凝土强度de。随着偏心距的增加,试样的延展性增加,而承载能力降低。此外,提出了一种RSCCFCST柱的现象学模型,该模型具有在加载过程中捕获过程的多功能能力。本研究有望进一步理解行为,并为设计和工程应用中的RSCCFCST柱提供指导。

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