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The impact mechanical characteristics of steam-cured concrete under different curing temperature conditions

机译:不同养护温度条件下蒸养混凝土的冲击力学特性

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In order to clarify the influence of curing temperature on the dynamic properties of steam-cured concrete, series of SHPB tests were conducted to investigate the impact mechanical characteristics of a typical steam-cured concrete applied in prefabricated components of high-speed railway in China. The index of fineness modulus was proposed to evaluate the degree of concrete breakage under different strain rates. The results showed that the peak stress of steam cured concrete increased with increasing the strain rate, while the peak strain showed a decreasing trend, the fineness modulus of broken concrete particles decreased, and the degree of fracture increased obviously. As curing temperature increases, the peak stress of steam-cured concrete decreased significantly, and the concrete specimens showed a stronger strain rate sensitivity. A statistical damage constitutive model considering the strain rate was established and agreed well with the experimental stress-strain curves. Higher temperatures lead to an increase in internal defects of concrete, which makes the impact mechanical properties different from that of normal temperature cured concrete. (C) 2020 Published by Elsevier Ltd.
机译:为了弄清楚养护温度对蒸养混凝土动力性能的影响,进行了一系列的SHPB试验,以研究典型的蒸养混凝土在中国高速铁路预制构件中的冲击力学性能。提出了细度模量指数,以评价不同应变速率下混凝土的破坏程度。结果表明,水蒸气养护混凝土的峰值应力随着应变率的增加而增加,峰值应变呈下降趋势,破碎混凝土颗粒的细度模量下降,断裂程度明显增加。随着养护温度的升高,蒸汽养护混凝土的峰值应力显着降低,并且混凝土试样显示出更强的应变速率敏感性。建立了考虑应变率的统计损伤本构模型,并与实验应力-应变曲线吻合良好。较高的温度导致混凝土内部缺陷的增加,这使得冲击力学性能不同于常温固化混凝土。 (C)2020由Elsevier Ltd.出版

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