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Mechanical Characterisation Of Concrete In Tension And Compression At High Strain Rate Using A Modified Hopkinson Bar

机译:改进的霍普金森杆在高应变率下拉伸和压缩混凝土的力学特性

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摘要

Reliable material models for concrete behaviour at higher strain rates are necessary for the design and assessment of concrete structures subject to impact and blast. This information should be obtained from experiments performed on large-size concrete specimens (up to 200 mm side cubes) with aggregates of realistic maximum size (16-32 mm). Such type of experiments, based on Hopkinson bar techniques, are conducted and described in this study. Several normal concrete grades and steel-fibre-reinforced concretes have been tested, and full stress-strain curves have been obtained for strain rates up to 10/s. The results, presented in terms of the dynamic increase factor, show clearly the increase of strength of the material with increasing strain rates, more accentuated in tension than in compression, and the influence of the specimen and aggregate size.
机译:为了设计和评估遭受冲击和爆炸的混凝土结构,需要具有较高应变率的可靠混凝土材料模型来应对较高的应变率。该信息应从对具有实际最大尺寸(16-32 mm)的骨料的大型混凝土试样(最大200毫米的立方体)进行的实验中获得。本项研究基于霍普金森棒技术进行了此类实验。已经测试了几种普通的混凝土等级和钢纤维增强的混凝土,并且对于高达10 / s的应变速率已经获得了完整的应力应变曲线。以动态增加因子表示的结果清楚地表明,材料的强度随应变率的增加而增加,在拉伸中比在压缩中更突出,并且受试样和骨料尺寸的影响。

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