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A novel analysis-oriented theoretical model for steel tube confined ultra-high performance concrete

机译:一种以钢管为主的钢管理论模型局限性超高性能混凝土

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This paper for the first time presents a newly developed analysis-oriented theoretical model for steel tube confined ultra-high performance concrete (UHPC). An active-confined UHPC model is firstly developed using experimental data collected from 62 conventional tri-axial compression tests for UHPC. Lateral strain calculation equations for both unconfined and active-confined UHPC are then proposed by using elastoplastic theory. Combined with the constitutive model of steel tube, the analysis-oriented theoretical model for steel tube confined UHPC is established and verified with available experimental results of UHPC filled steel tube (UHPCFST). Furthermore, the model?s performance is evaluated with elaborations on the steel tube confinement effect and the axial stress?strain behavior of the confined UHPC for different steel tube thicknesses, steel yield strengths and UHPC compressive strengths. It is unveiled from the responses of the developed model that the confinement effect of steel tube on the core UHPC tends to be postponed for the case with higher UHPC compressive strength. The impacts on the confining stress follow an order of steel tube thickness UHPC compressive strength steel yield strength. Moreover, the pre-peak axial stress?strain behavior of steel tube confined UHPC is primarily determined by the UHPC compressive strength, while its post-peak behavior varies with the change in both UHPC compressive strength and steel tube thickness. The proposed theoretical model can serve as a useful tool for engineering design and nonlinear analysis of UHPCFST.
机译:本文首次提出了一种新开发的钢管局限性理论模型,局限性超高性能混凝土(UHPC)。首先使用从UHPC的62常规三轴压缩测试收集的实验数据开发了一个有效限制的UHPC模型。然后通过使用弹塑性理论提出针对非束缚和有效密闭的UHPC的横向应变计算方程。结合钢管本构型模型,建立了钢管狭窄的UHPC的分析理论模型,并验证了UHPC填充钢管(UHPCFST)的实验结果。此外,模型的性能是通过钢管限制效果和轴应力的阐述来评估孔隙管厚度的轴应力行为,钢屈服强度和UHPC抗压强度。它从开发模型的响应中亮相,即钢管对核心UHPC上的钢管的限制效果往往被推迟,以便具有更高的UHPC抗压强度的情况。对限制应力的影响遵循钢管厚度&gt的顺序。 UHPC抗压强度&钢屈服强度。此外,预峰值轴向应力?钢管限制UHPC的应变行为主要由UHPC抗压强度确定,而其后峰值行为随UHPC抗压强度和钢管厚度的变化而变化。该建议的理论模型可以作为UHPCFST的工程设计和非线性分析的有用工具。

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