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The Influence of Steel Fibers on the Dynamic Response of Self-Compacting Concrete

机译:钢纤维对自压力混凝土动态响应的影响

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Concrete subjected to high strain rates behaves notably differently in comparison to quasi-static conditions, which can be affected by the addition of steel fibers. The influence of steel fibers on the dynamic compressive behavior of self-compacting concrete (SCC) was studied experimentally using Split Hopkinson Pressure Bar (SHPB) tests. The investigations were performed in a range of quasi-static rates up to dynamic strain rates of 462 1/s. The effect of steel fibers on the stress-strain diagram, dynamic increase factor (DIF) and failure pattern of SCC conducted under high strain rates was analyzed. The experimental results presented in this paper and the ones from recent works of other authors indicate that application of steel fibers reduces the strain-rate sensitivity of different concretes and has a beneficial effect on the specimen failure pattern. Moreover, the conducted SHPB tests show an important role of fibers in reduction of the strain rates reached in the specimen under the same pressure level in comparison to plain concrete specimens.
机译:与准静态条件相比,经受高应变率的混凝土的表现出显着不同,这可能受到钢纤维的增加来影响。用Split Hopkinson压力棒(SHPB)试验,研究了钢纤维对自压力混凝土(SCC)动态压缩行为的影响。调查在一系列的准静电速率下进行,其动态应变率为462 1 / s。分析了钢纤维对高应变率进行的应力 - 应变图,动态增加因子(DIF)和SCC的故障模式的影响。本文介绍的实验结果和其他作者最近作品的实验结果表明钢纤维的应用降低了不同混凝土的应变率敏感性,对样品失效模式具有有益的影响。此外,传导的SHPB试验表明纤维在与普通的混凝土样本相同的压力水平下,纤维在相同压力水平下达到标本达到的应变率的重要作用。

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