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Numerical validation of a simplified inverse analysis method to characterize the tensile properties in strain-softening UHPFRC

机译:简化逆分析方法的数值验证表征应变软化UHPFRC中拉伸性能的抗肌

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In previous research a simplified closed-form non-linear hinge model based on the Third Point Bending Test(TPBT)developed by the authors to derive the tensile material properties of Ultra-High-Performance Fiber-Reinforced Concrete(UHPFRC)was numerically validated.This simplified non-linear hinge model was calibrated for UHPFRC that exhibits strain-hardening constitutive behavior.The aim of this work is the numerical validation of the simplified inverse analysis method to characterize the tensile properties of UHPFRC even with those UHPFRCs which exhibit strain-softening behavior.To get this objective a Finite Element Model(FEM)is carried out.The parameters to characterize the concrete properties from the simplified inverse analysis method by means of TPBT are used in the numerical modelling.The constitutive model for UHPFRC is modelled using a discrete crack approach for the macrocrack position.Different parameters are analysed to quantify the accuracy of the FEM.As a result,the model shows conservative load-deflection response when it is compared to the experimental curves.
机译:在先前的研究中,基于作者开发的基于第三点弯曲测试(TPBT)的简化的闭合式非线性铰链模型以获得超高性能纤维钢筋混凝土(UHPFRC)的拉伸材料特性进行了数值验证。这种简化的非线性铰链模型被校准,用于表现出应变硬化的组成型行为。该作品的目的是表征UHPFRC的拉伸性能的简化逆分析方法的目的,即使具有表现出应变软化的uHPFRC为了获得这一目标,实现了一个有限元模型(FEM)。用TPBT使用简化的逆分析方法的具体性能的参数用于数值型型。使用A模拟UHPFRC的本质型模型Macreacrack位置的离散裂缝方法。分析了分析参数以量化FEM的准确性。结果,模型显示与实验曲线进行比较时的保守载荷偏转响应。

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