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Dynamic Tensile Behavior of Steel HRB500E Reinforcing Bar at Low Medium and High Strain Rates

机译:HRB500E钢筋在低中和高应变速率下的动态拉伸行为

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摘要

The strain rate effect of engineering materials should be considered in the assessment of the performance of reinforced concrete (RC) structures under extreme dynamic loads such as blast and impact. However, the strain rate behavior of 500 MPa-grade anti-earthquake hot-rolled high-strength ribbed bar (HRB500E), used in critical RC members to improve the anti-earthquake performance, has not been investigated and reported in the open literature. That restricts its application in RC structures subjected to extreme dynamic loads. In this paper, dynamic tensile tests of HRB500E steel were conducted using an electromechanical universal testing machine and a servo-hydraulic high-speed testing machine. The stress–strain curves at strain rates ranging from 0.00025 to 550 s were obtained where HRB500E steel was found significantly sensitive to strain rate. Existing formulations to evaluate the dynamic increase factor for yield stress (DIF ) are found to be not suitable for HRB500E steel, thus the widely used Cowper–Symonds and Malvar models for predicting the DIF were modified based on the test results. Furthermore, the parameter of the Mander material model for describing engineering stress–strain relationship was also calibrated. Finally, the Johnson-Cook and proposed constitutive models for the true stress–strain relationship were examined. The proposed constitutive model can provide better prediction accuracy for yield stress than the Johnson-Cook model.
机译:在评估在爆炸和冲击等极端动态载荷下的钢筋混凝土(RC)结构的性能时,应考虑工程材料的应变率效应。然而,尚未在公开文献中研究和报道用于关键RC构件以改善抗震性能的500 MPa级抗震热轧高强度带肋钢筋(HRB500E)的应变率行为。这限制了它在承受极端动态载荷的RC结构中的应用。本文使用机电通用试验机和伺服液压高速试验机对HRB500E钢进行了动态拉伸试验。在HRB500E钢对应变率非常敏感的情况下,获得了应变率在0.00025至550 s范围内的应力-应变曲线。发现现有的评估屈服应力动态增加因子(DIF)的公式不适用于HRB500E钢,因此根据测试结果修改了广泛使用的Cowper-Symonds和Malvar模型来预测DIF。此外,还对用于描述工程应力-应变关系的Mander材料模型的参数进行了校准。最后,检验了Johnson-Cook和提出的本构关系模型的真实应力-应变关系。提出的本构模型可以提供比Johnson-Cook模型更好的屈服应力预测精度。

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