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Effect of Silica Fume in Concrete on Mechanical Properties and Dynamic Behaviors under Impact Loading

机译:混凝土中硅粉对冲击载荷下力学性能和动力学行为的影响

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摘要

The effect of silica fume (SF) in concrete on mechanical properties and dynamic behaviors was experimentally studied by split Hopkinson pressure bar (SHPB) device with pulse shaping technique. Three series of concrete with 0, 12%, and 16% SF as a cement replacement by weight were produced firstly. Then the experimental procedure for dynamic tests of concrete specimens with SF under a high loading rate was presented. Considering the mechanical performance and behaviors of the concrete mixtures, those tests were conducted under five different impact velocities. The experimental results clearly show concrete with different levels of SF is a strain-rate sensitive material. The tensile strength under impact loading of the tested specimens was generally improved with the increasing content of SF levels in concrete. Additionally, the tensile strength under impact loading of the concrete enhances with the increase of the strain rates. Finally, failure modes, dynamic tensile strength, dynamic increase factor (DIF), and critical strain are discussed and analyzed. These investigations are useful to improve the understanding of the effect of SF in concrete and guide the design of concrete structures.
机译:通过采用脉冲整形技术的剖分式霍普金森压力棒(SHPB)装置,实验研究了混凝土中硅粉(SF)对机械性能和动力学行为的影响。首先生产了三组混凝土,其中SF含量分别为0、12%和16%,以水泥替代。提出了高加载速率下含SF混凝土试件动态试验的实验步骤。考虑到混凝土混合物的机械性能和性能,这些测试是在五种不同的冲击速度下进行的。实验结果清楚地表明,不同含量SF的混凝土是应变率敏感材料。随着混凝土中SF含量的增加,测试样品的冲击载荷下的抗拉强度通常得到改善。另外,混凝土在冲击载荷下的抗拉强度随着应变速率的增加而增强。最后,讨论并分析了破坏模式,动态拉伸强度,动态增加因子(DIF)和临界应变。这些研究有助于增进人们对SF对混凝土的影响的理解,并指导混凝土结构的设计。

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