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Comparative experimental investigations on the compressive impact behavior of fiber-reinforced ultra high-performance concretes using split Hopkinson pressure bar

机译:霍普金森分体式压力棒对纤维增强超高性能混凝土压缩冲击性能的对比实验研究

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In this paper the compressive impact behavior of steel fiber reinforced ultra-high performance concrete (UHPC) with compressive strengths in excess of 210 MPa was investigated. Different steel fiber volume fractions were used ranging from 0% to 4%. The tested strain rate ranged from 22 to 110 s(-1). Based on the obtained results a general equation was developed expressing the dynamic impact factor (DIF) in dependency of the fiber volume fraction. The impact resistance of all UHPC specimens was investigated using a split Hopkinson pressure bar complemented with pulse shaping disks or a shaped striker bar. All analyzed test results were found to satisfy the requirements of dynamic testing such as stress equilibrium, constant strain rate, and reduced friction to minimize inertial effects. A complementary finite element model was developed to simulate the behavior of UHPC specimens under high strain rates. From the results of the finite element analysis it was concluded that the contribution of friction between a greased specimen and the impact bars on the DIF can be neglected. Additionally, UHPC specimens reinforced with 0.5% volume fraction of steel, basalt, or polyvinyl alcohol fibers were tested under dynamic compressive loading at a strain rate of about 40 s(-1). The results showed that the slope of the DIF versus strain rate increased with increasing fiber volume fraction. Moreover, UHPC with polyvinyl alcohol fibers was more strain rate sensitive than UHPC with steel and basalt fibers of the same length and volume fraction. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文研究了抗压强度超过210 MPa的钢纤维增强超高性能混凝土(UHPC)的抗压冲击性能。使用的钢纤维体积分数范围从0%到4%。测试的应变率范围为22到110 s(-1)。根据获得的结果,开发了一个通用方程,表示取决于纤维体积分数的动态影响因子(DIF)。使用分开的Hopkinson压力棒和脉冲成形盘或成形的撞针对所有UHPC标本的抗冲击性进行了研究。发现所有分析的测试结果均满足动态测试的要求,例如应力平衡,恒定应变率和减小的摩擦以最小化惯性效应。建立了互补有限元模型,以模拟高应变率下的UHPC试样的行为。从有限元分析的结果得出的结论是,可以忽略润滑脂试样与DIF冲击杆之间摩擦的贡献。此外,在动态压缩载荷下以约40 s(-1)的应变速率测试了用0.5%体积分数的钢,玄武岩或聚乙烯醇纤维增强的UHPC标本。结果表明,DIF的斜率与应变率的关系随纤维体积分数的增加而增加。此外,具有聚乙烯醇纤维的UHPC比具有相同长度和体积分数的钢和玄武岩纤维的UHPC对应变率更敏感。 (C)2018 Elsevier Ltd.保留所有权利。

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