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Finite element modelling to predict the flexural behaviour of ultra-high performance concrete members

机译:有限元建模预测超高性能混凝土构件的弯曲行为

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This paper presents a finite element (FE) modelling to predict the behaviour of ultra-high performance concrete (UHPC) members under static flexural loading. A plasticity-based constitutive model for concrete and an implicit solver in LS-DYNA were adopted in the numerical simulation. Experimental data for 21 UHPC specimens tested in the present study and in previous works were used to calibrate and validate the proposed FE model and modelling technique. The simulation was able to accurately predict the experimentally obtained ultimate strength, stiffness, and hardening and softening behaviours of the specimens. This demonstrates the effectiveness and adequacy of the developed FE model and modelling technique.
机译:本文介绍了有限元(FE)模型,以预测超高性能混凝土(UHPC)构件在静态弯曲负载下的行为。数值模拟采用了一种用于混凝土的基于塑性的混凝土结构和LS-DYNA的隐式求解器。在本研究中测试的21种UHPC样本的实验数据和以前的作品用于校准并验证所提出的FE模型和建模技术。模拟能够准确地预测实验获得的最终强度,刚度和样本的硬化和软化行为。这证明了开发的FE模型和建模技术的有效性和充分性。

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