结合数字图像技术的岩土界面侵彻后注浆力学机理分析

Peng Zhao, Chao-yu Wang, Pengfei Yong, Yingli Wang, Xiaoming Li, Zhihui Chen
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摘要

针对岩土界面的弱化问题,研制了一种渗透性聚合物,并结合DIC和SEM技术对其进行了分析。研究了后渗透注浆加固土石界面力学特性的机理。通过直剪试验和DIC技术,分析了不同法向压力、含水率、界面干湿特性和养护环境对土石界面力学特性的影响。采用SEM和MIP试验对渗透注浆加固土-岩界面的微观结构机理进行了研究。结果表明:渗透性聚合物主要通过增强界面内聚强度来提高土-石界面抗剪强度;法向压力增大了界面摩擦,但界面摩擦系数随法向压力的增大而减小。含水率影响聚合物的注浆效果,界面润湿性使聚合物无法向界面方向渗透,从而降低了界面的结合强度。由于透水聚合物的渗透性,气泡固化环境对界面剪切性能的影响小于对界面干湿性能的影响。SEM和MIP测试验证了聚合物有效填充了土壤中的孔隙,减小了土壤的平均孔径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical mechanism analysis of post-penetration grouting at soil-rock interface combined with digital image technology
Aiming at the weakening of the soil-rock interface, a permeable polymer is developed in this paper, which is analyzed by combining DIC and SEM techniques. The mechanism of mechanical properties of soil-rock interface strengthened by post-osmotic grouting was studied. Through direct shear test and DIC technology, the effects of different normal pressure, water content, interface dry-wet characteristics, and curing environment on mechanical properties of the soil-rock interface were analyzed. SEM and MIP tests were used to investigate the microstructure mechanism of the soil-rock interface reinforced by infiltration grouting. The results show that the permeable polymer can improve the shear strength of the soil-stone interface mainly by enhancing the cohesive strength of the interface. The normal pressure increases the interface friction, but the interface friction coefficient decreases with the increase of the normal pressure. The water content affects the grouting effect of the polymer, and the interfacial wetting property prevents the polymer from penetrating into the interfacial direction, thus reducing the bonding strength of the interfacial. Because of the permeability of permeable polymers, the effect of the water bubble curing environment on the shear properties of the interface is less than that of the interface wetting and drying properties. SEM and MIP tests verify that the polymer effectively fills the pores in the soil and reduces the average pore size of the soil.
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