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Effects of steel fiber and strain rate on the dynamic compressive stress-strain relationship in reactive powder concrete

机译:钢纤维和应变速率对活性粉末混凝土动压应力-应变关系的影响

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Three types of steel fiber-reinforced reactive powder concrete (SFRPC) with steel fiber contents of 0%, 2%, and 5% by volume are tested under dynamic compression by using a 40-mm-diameter split Hopkinson pressure bar (SHPB) apparatus. Data from SHPB experiments are employed to analyze the influence of critical parameters on the dynamic compressive stress-strain relationship of SFRPC at high strain rates. Test results show that steel fiber has a significant effect on the stress-strain relationship and energy absorption of RPC. Peak strain and peak stress increase with the increasing steel fiber content at the identical strain rates. A dynamic compressive damage-softening model for SFRPC at high strain rates is put forward on the basis of the Weibull distribution of SFRPC strength. A theoretical formula for E-d was established in order to ascertain E-d for the proposed constitutive model. The ratio of E-d to static elastic modulus E-s increases with increasing strain rate and decreasing steel fiber content. The proposed constitutive model captures the dynamic compressive stress-strain relationship of SFRPC, and theoretical results are in agreement with measured data. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用直径为40 mm的霍普金森分体式压力棒(SHPB)在动态压缩下测试了三种含量分别为0%,2%和5%的钢纤维增强粉末混凝土(SFRPC) 。 SHPB实验的数据用于分析关键参数对高应变速率下SFRPC动态压缩应力-应变关系的影响。测试结果表明,钢纤维对RPC的应力-应变关系和能量吸收具有显着影响。在相同的应变速率下,峰值应变和峰值应力随钢纤维含量的增加而增加。根据SFRPC强度的Weibull分布,提出了高应变率下SFRPC的动态压缩损伤软化模型。建立了E-d的理论公式,以便确定所提出的本构模型的E-d。 E-d与静弹性模量E-s之比随应变率的增加和钢纤维含量的减少而增加。提出的本构模型反映了SFRPC的动态压缩应力-应变关系,理论结果与实测数据吻合。 (C)2018 Elsevier Ltd.保留所有权利。

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