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Strain Rate Behavior in Tension of Reinforcing Steels HPB235 HRB335 HRB400 and HRB500

机译:HPB235HRB335HRB400和HRB500钢筋拉伸时的应变率行为

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摘要

The strain rate effect of reinforcing steel bars is generally indispensable for modeling the dynamic responses of reinforced concrete structures in blast and impact events. A systematic experimental investigation was conducted on the strain rate behavior of reinforcing steel bar grades HPB235, HRB335, HRB400, and HRB500 which are widely used in the field of civil engineering in China. The dynamic testing was performed using a servo-hydraulic Instron VHS160/100-20 in a strain rate range from 2 to 75 s−1. Stress-strain curves at preset strain rates were obtained. The test data were then used to derive the parameters in a model based on the dynamic increase factors (DIFs) of strengths and the Johnson–Cook constitutive model. Results indicated that a significant strain rate effect was observed for the four rebar grades. The dynamic yield strengths increased from 13% to 41% and their ultimate strengths improved from 9% to 19% in the strain rate range during testing. The strain rate behavior of the four rebar grades could be appropriately predicted using the parameters in the model based on the DIFs of strengths and the Johnson–Cook model.
机译:钢筋的应变率效应对于建模爆炸和冲击事件中的钢筋混凝土结构的动力响应通常是必不可少的。对在中国土木工程领域中广泛使用的HPB235,HRB335,HRB400和HRB500级钢筋的应变率特性进行了系统的实验研究。使用伺服液压Instron VHS160 / 100-20在2至75 s -1 的应变速率范围内进行动态测试。获得了预设应变率下的应力-应变曲线。然后,将测试数据用于基于强度的动态增加因子(DIF)和Johnson-Cook本构模型得出模型中的参数。结果表明,对于四个螺纹钢等级,观察到了显着的应变率效应。在测试过程中,动态屈服强度从13%增加到41%,极限强度从9%增加到19%。可以使用基于强度DIF和Johnson-Cook模型的模型中的参数来适当预测四个钢筋等级的应变率行为。

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