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Compressive Test Characteristics and Constitutive Relationship of Wet Polypropylene Macrofiber-Reinforced Shotcrete

机译:湿聚丙烯大甲基钢筋混凝土压缩试验特征及本构关系

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Shotcrete is often subject to poor ductility and cracking problems, particularly under high stresses. In order to deal with these issues, the feasibility of adding polypropylene macrofibers to shotcrete was verified. To ascertain the supporting effect, dry shotcrete, wet shotcrete, and wet polypropylene macrofiber-reinforced shotcrete (WPMS) were used as samples. Furthermore, the mechanical response characteristics thereof in uniaxial compression tests were compared and analyzed by acoustic emission (AE) monitoring. The results showed that the three materials were brittle, but the ductility, residual strength, and bearing capacity of polypropylene macrofiber-reinforced shotcrete were significantly enhanced. The energy absorption value of plain shotcrete was higher in the cracking stage, while that of polypropylene macrofiber-reinforced shotcrete was greater in the postpeak stage, which showed that the polypropylene macrofiber-reinforced shotcrete had the characteristics of a high crack-initiation strength and toughness. Besides, the energy release from fiber shotcrete occurred after the peak stress rather than near the peak stress. The average energy absorbed by polypropylene macrofiber-reinforced shotcrete was significantly higher than that in dry shotcrete and wet shotcrete, which implied that polypropylene macrofiber-reinforced shotcrete could mitigate the brittle instability of a shotcrete layer. A constitutive model of damage statistics was established based on the test data. The comparison between the experimental data and the fitting results can reflect the characteristics of the total stress-strain curve of such shotcrete. The results provide a basis for the optimization of polypropylene macrofiber-reinforced shotcrete layers.
机译:射击晶往往受到延展性差,裂缝问题的影响,特别是在高压下。为了处理这些问题,验证了将聚丙烯大致镁添加到喷射晶片的可行性。为了确定支撑效果,使用干射击晶,湿射击晶和湿聚丙烯大致纤维增强喷射克雷特(WPM)作为样品。此外,通过声发射(AE)监测来比较和分析单轴压缩试验中的机械响应特性。结果表明,三种材料是脆性的,但聚丙烯大甲基纤维增强喷射卷曲的延展性,剩余强度和承载力显着提高。裂解阶段的普通喷射晶体的能量吸收值较高,而聚丙烯大致纤维增强的喷射术中的突出阶段更大,这表明聚丙烯大致纤维增强的吸管具有高裂纹引发强度和韧性的特征。此外,在峰值应力而不是附近峰值应力之后,纤维喷射的能量释放。由聚丙烯大致纤维增强喷射筛吸收的平均能量显着高于干喷射箭和湿射击器中的能量,这暗示聚丙烯大纤维增强的喷射器可以减轻喷射层的脆弱不稳定。基于测试数据建立了一个构成损伤统计模型。实验数据与拟合结果之间的比较可以反映这种吸管的总应力 - 应变曲线的特性。结果为优化聚丙烯大甲基钢筋钢筋混凝土层提供了基础。

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