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Application on bending performance of annular concrete-filled steel tube stent

机译:对环形混凝土钢管支架弯曲性能的应用

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Concrete filled steel tube (CFST) stent applied in the actual project is composed of four arc CFST arches with casting. By monitoring the uniform loading deformation of CFST arches mounted on the arc middle section and the left-right shoulder section in a CFST stent, a comprehensive analysis method was proposed for the flexural propagation using ABAQUS program for the strain and the ultimate strength capacity of the outer steel pipe and the confined core concrete. The realtime monitoring and experimental results show that, the CFST specimens were damaged under the influence of triple action of pulling, pressing and bending during the process of loading increases. The support resistance capacity of the annular CFST bracing system increases with the slip amount of CFST arches and gathering of the thickness of CFST stent. After reaching the ultimate load, although it leads to concrete volume expansion and then the steel tube drum package, but annular CFST bracing system reduced the bending moment damage deformation and meet the stability requirements of practical deep underground structure., therefore, there is a certain engineering guidance significance to the non-dense pressure construction condition. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在实际项目中应用的混凝土填充钢管(CFST)支架由四个带铸造的四个弧形CFST拱门组成。通过监测安装在CFST支架上的CFST拱的CFST拱的均匀加载变形,提出了一种使用ABAQUS计划的弯曲传播,为应变和最终强度容量的弯曲传播提出了一种综合分析方法。外钢管和密闭芯混凝土。实时监测和实验结果表明,CFST标本在加载过程中拉动,压制和弯曲的三重作用的影响下损坏。环形CFST支撑系统的支撑电阻容量随着CFST拱的滑移量和CFST支架的厚度的收集而增加。在达到最终负载后,虽然它导致混凝土容量膨胀,然后导致钢管桶装,但环形CFST支撑系统降低了弯曲力矩损伤变形,满足了实用深层地下结构的稳定要求。因此,有一定的对非密集压力建设条件的工程指导意义。 (c)2020 elestvier有限公司保留所有权利。

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