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首页> 外文期刊>Journal of materials in civil engineering >Dynamic Mechanics and Damage Evolution Characteristics of Rubber Cement Mortar under Different Curing Humidity Levels
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Dynamic Mechanics and Damage Evolution Characteristics of Rubber Cement Mortar under Different Curing Humidity Levels

机译:不同固化湿度水平下橡胶水泥砂浆的动态力学和损伤演化特性

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摘要

The dynamic compressive test of rubber cement mortar (RCM) under two different curing humidity levels (the relative humidity was 95% and 50%, respectively) was carried out by using a split Hopkinson pressure bar (SHPB) device, and the dynamic mechanics and damage evolution characteristics of RCM were studied. The results show that the impact resistance of cement mortar is obviously improved by adding rubber particles and is decreased by reducing the curing humidity. The stress-strain curve of the RCM has a transverse fluctuation in the top region, which reflects the excellent ductility and toughness of the RCM. Both dynamic peak stress and dynamic increase factor (DIF) have a linear positive correlation with strain rates, and the DIF is reduced due to the decrease in curing humidity. A damage analysis was carried out, and the reduction of curing humidity and the incorporation of rubber particles increased the damage variable D and significantly changed the dynamic damage evolution process of the cement mortar. Finally, the blasting disturbance and the surrounding rock stability were analyzed along with the material properties and underground engineering issues. Therefore, this engineering application analysis demonstrated that the rubber cement-based materials have a prospective application.
机译:通过使用分开的Hopkinson压力棒(SHPB)器件和动态力学和动态力学和动态力学和动态力学和动态力学和动态力学和动态力学和动态力学和动态力学研究了RCM的损伤演化特征。结果表明,通过加入橡胶颗粒,水泥砂浆的抗冲击性明显改善,通过降低固化湿度降低。 RCM的应力 - 应变曲线在顶部区域中具有横向波动,这反映了RCM的优异延展性和韧性。动态峰值应力和动态增加因子(DIF)都具有与应变速率的线性正相关,并且由于固化湿度的降低,DIF减小。进行了损伤分析,并降低固化湿度和橡胶颗粒的掺入增加了损伤变量D,并显着改变了水泥砂浆的动态损伤演化过程。最后,分析了爆破干扰和周围的岩石稳定性以及材料特性和地下工程问题。因此,该工程应用分析表明,橡胶水泥基材料具有前瞻性应用。

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