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Quasi-static and dynamic compressive mechanical properties of engineered cementitious composite incorporating ground granulated blast furnace slag

机译:掺有高炉矿渣的工程胶结复合材料的准静态和动态压缩力学性能

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摘要

The ground granulated blast-furnace slag (GGBS) has been widely used as a supplementary cementitious material in concrete production due to its lower heat of hydration, ability to gain strength over a longer period, superior performance against chemical attacks, and lower environmental impact. Four Engineered Cementitious Composite (ECC) mixtures with 50%, 60%, 70% and 80% substitution amounts of GGBS were prepared and their dynamic compressive mechanical behavior had been investigated by using a split Hopkinson pressure bar (SHPB) system at strain rates ranging from 84.8 to 184.6 s~(-1). The corresponding quasi-static compressive responses of GGBS-ECC were also studied experimentally for contrasting with their dynamic tests. The objective of using GGBS to replace fly ash in ECC was to obtain higher quasi-static compressive strength and dynamic load-carrying capacity. The dynamic compressive stress-strain curves did not show residual strength behavior as that in the quasi-static stress-strain curves. ECC incorporating GGBS exhibited strain rate dependence. The peak stress increased and the peak strain decreased with the increase of strain rates. The toughness ratio under quasi-static compression was lower than that of dynamic compression according to the proposed method in this study. The toughness ratio under dynamic compression showed a slight increase with the GGBS content increasing. The strain rate had little influence on the toughness ratio.
机译:磨细的高炉矿渣粉(GGBS)由于其较低的水合热,可在较长时间内获得强度,抗化学侵蚀的优异性能以及较低的环境影响而被广泛用作混凝土生产中的辅助胶结材料。制备了GGBS取代量分别为50%,60%,70%和80%的四种工程水泥复合材料(ECC)混合物,并使用分流Hopkinson压力棒(SHPB)系统在应变速率范围为1的情况下研究了它们的动态压缩力学行为。从84.8到184.6 s〜(-1)。还通过实验研究了GGBS-ECC的相应准静态压缩响应,以与它们的动态测试进行对比。在ECC中使用GGBS代替粉煤灰的目的是获得更高的准静态抗压强度和动态承载能力。动态压缩应力-应变曲线没有显示出准静态应力-应变曲线中的残余强度行为。包含GGBS的ECC表现出应变率依赖性。随着应变率的增加,峰值应力增加,峰值应变减小。根据本文提出的方法,准静态压缩下的韧性比低于动态压缩下的韧性。动态压缩下的韧性比随GGBS含量的增加而略有增加。应变速率对韧性比几乎没有影响。

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