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Numerical Analysis of Wired Connections of the Reinforcement Bars of Steel Cages: the Slash-tying Technique

机译:钢笼加强筋有线连接的数值分析:绑扎技术

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The steel reinforcement cages are the core of the reinforced concrete elements such as columns, walls, beams and slabs. They are comprised of the longitudinal and transverse reinforcement bars, as well as of the wires that hold them in position and secure the cage stability prior to concreting. The strength and the behaviour of the steel cages at their final condition is well understood. Nonetheless, their behaviour during assembly, handling and lifting operations has not been thoroughly studied yet despite the reports of severe failures in these structures. The aim of this paper is to present the results of a numerical study of one of the most conventional tying techniques in steel cages: the slash connection. Furthermore, this paper illustrates the difficulties in the numerical analyses of the connections using advance finite element models. The validation of the numerical results is attempted via load - displacement curves compared to existing experimental testing. This is the first step of an ongoing project in which the stability and strengthening of the steel reinforcement cages is studied.
机译:钢筋笼是钢筋混凝土构件(如柱,墙,梁和楼板)的核心。它们由纵向和横向钢筋以及将其固定在位并在浇筑前确保保持架稳定性的钢丝组成。钢笼在其最终状态下的强度和性能已广为人知。尽管如此,尽管有报道称这些结构发生严重故障,但它们在组装,搬运和提升操作过程中的行为尚未得到彻底研究。本文的目的是介绍钢笼中最传统的绑扎技术之一的斜线连接的数值研究结果。此外,本文还说明了使用高级有限元模型对连接进行数值分析时遇到的困难。与现有的实验测试相比,通过载荷-位移曲线尝试对数值结果进行验证。这是正在进行的项目的第一步,其中研究了钢筋笼的稳定性和加固。

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