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Structural behavior of cast-in C-channel anchors in precast concrete under uniaxial tension

机译:单轴拉力下预制混凝土中C型通道锚的结构性能

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摘要

The cast-in C-channel is a small anchoring steel piece used to post-connect different types of elements in precast concrete members. The objective of this study was to investigate the ultimate capacity of cast-in C-channels under uniaxial tension and to compare its ultimate load capacity and failure modes with a three-dimensional finite element (FE) simulation, and to develop a mechanistic solution for cast-in C-channels. Five samples were cast and tested in varying configurations to induce the different failure modes of the channels, focusing on the influence of the confinement of the host concrete as well as the effect of the studs. The results showed that flexure of the channel governed the capacity in both the experimental work as well as in FE. In addition, the results of having local lip yielding as another dominant failure mechanism were similar to that observed in the experimental work and the finite element method (FEM). The FEM predicted not only the failure modes as addressed in mechanistic formulations but also captured the diagonal cracking in the host concrete and relative slip of the embedded channel, both phenomena observed in the experimental work but not accounted explicitly in the current design formulations.
机译:嵌入式C形通道是一种小型锚固钢片,用于后期连接预制混凝土构件中的不同类型的元素。这项研究的目的是研究单轴拉伸下C型通道的极限承载力,并将其极限承载力和破坏模式与三维有限元(FE)模拟进行比较,并提出一种力学解决方案。嵌入式C通道。浇铸了五个样品,并以不同的配置进行了测试,以引发通道的不同破坏模式,重点关注主体混凝土的限制以及螺柱的影响。结果表明,通道的弯曲度决定了实验工作和有限元分析的能力。此外,将局部唇部屈服作为另一主要失效机理的结果与在实验工作和有限元方法(FEM)中观察到的结果相似。有限元法不仅预测了机械公式中提到的破坏模式,而且还捕获了主体混凝土中的对角裂缝和埋入通道的相对滑动,这两种现象在实验工作中均已观察到,但在当前的设计公式中并未明确说明。

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