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SHPB Test and Microstructure Analysis on Ready-Mixed Concrete in Uniaxial Load and Passive Confining Pressure States

机译:单轴荷载与无源限制压力态现成混凝土的SHPB测试与微观结构分析

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摘要

Ready-mixed concrete has been used as a support in mine roadways, where the impact load of blasting excavation can cause damage to the concrete support of the roadway. However, limited studies are available on the effect of water content, storage period, and impact pressure on dynamic mechanical properties of ready-mixed concrete in uniaxial load and passive confining pressure states. To investigate the effect of water contents (0%, 1.0%, 1.5%, and 2.0% by mass of dry sand), storage periods (0 d, 3 d, 7 d, 15 d, 20 d, and 30 d), and impact pressures (0.6 MPa and 0.9 MPa) on dynamic mechanical properties of ready-mixed concrete in uniaxial load and passive confining pressure states, the dynamic compression test using split Hopkinson pressure bar (SHPB) has been carried out. In addition, the microscopic test based on the scanning electron microscope (SEM) is conducted to analyze the effect of water content and storage period on the microstructure of ready-mixed concrete. The experimental results show that under the conditions of uniaxial load and passive confining pressure, the dynamic compressive strength of ready-mixed concrete decreases with the increase of water content and storage period but increases with the increase of impact pressure. At the same impact pressure, the dynamic compressive strength in passive confining pressure state is larger than that in uniaxial load state. The dynamic stress-strain curves of ready-mixed concrete in uniaxial load and passive confining pressure states can be divided into three stages: elastic stage, plastic stage, and failure stage. The peak strain increases with increasing impact pressure, and the peak strain in passive confining pressure state is more than that in uniaxial load state. The degree of damage for ready-mixed concrete specimens increases with the increase of the storage period and water content; however, the damage of specimens in passive confining pressure state is less than that of specimens in uniaxial load state. Meanwhile, an analysis to the microstructural mechanism of water content and storage period inside of ready-mixed concrete has been performed.
机译:现成混合混凝土已被用作矿井道路的支撑,其中爆破挖掘的冲击载荷可能会对道路的混凝土支撑造成损坏。然而,有限的研究可用于水含量,储存周期和冲击压力对单轴负荷和被动限制压力状态的现成混凝土动态力学性能的影响。研究水含量的影响(0%,1.0%,1.5%和2.0质量%的干砂),储存期(0d,3d,7 d,15 d,20 d和30d),和冲击压力(0.6MPa和0.9MPa)对单轴负荷和无源限制压力状态的现成混凝土动态力学性能,采用分裂霍普金森压力棒(SHPB)进行动态压缩试验。另外,对基于扫描电子显微镜(SEM)的显微镜测试以分析水含量和储存期对现成混合混凝土的微观结构的影响。实验结果表明,在单轴荷载和被动限制压力的条件下,现成混凝土的动态抗压强度随着水含量和储存周期的增加而降低,但随着冲击压力的增加而增加。在相同的冲击压力下,被动限制压力状态下的动态抗压强度大于单轴负载状态。单轴载荷和被动限制压力状态中现成混合混凝土的动态应力 - 应变曲线可分为三个阶段:弹性级,塑料阶段和故障阶段。峰值应变随着抗冲压压的增加而增加,并且被动限制压力状态下的峰值应变大于单轴负荷状态。随着储存期和含水量的增加,现成混合混凝土试样的损害程度增加;然而,被动限制压力状态下标本的损伤小于单轴负荷状态下的标本。同时,已经进行了对现成混合混凝土内部水含量和储存周期的微观结构机制的分析。

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