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Finite Element Analysis of Actively Confined Concrete Using Shape Memory Alloys

机译:形状记忆合金在主动约束混凝土中的有限元分析

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摘要

The novel technique of using Shape Memory Alloy (SMA) transverse reinforcement to confine concrete has proven its success in increasing the strength and ductility of concrete elements significantly. This new technique exploits the thermally activated shape memory feature of SMAs to apply high and permanent confinement pressure on concrete. Despite the experimental work done in this topic over the last few years, the numerical/analytical efforts are still lacking. This paper utilizes the analytical framework of the damaged plasticity model along with the finite element method (FEM) to predict and study the behavior of SMA confined concrete under uniaxial compression load. The flow rule and hardening/softening function adopted in the models are developed based on previous test results. The results prove that the finite element models can successfully capture the behavior of SMA confined concrete.
机译:使用形状记忆合金(SMA)横向钢筋来限制混凝土的新技术已证明成功地提高了混凝土构件的强度和延展性。这项新技术利用了SMA的热激活形状记忆功能,在混凝土上施加了永久性的高围压。尽管最近几年在此主题上进行了实验性工作,但仍缺乏数值/分析方面的努力。本文利用损伤塑性模型的分析框架和有限元方法(FEM)来预测和研究SMA约束混凝土在单轴压缩载荷下的性能。模型中采用的流动规则和硬化/软化功能是根据先前的测试结果开发的。结果证明,有限元模型可以成功地捕捉SMA约束混凝土的行为。

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