Wang Nan, Wang Runze, Zhang Qingzhao, Luo Yuanjie, Xu Hui
Key Laboratory of Geotechnical and Underground Engineering of Ministry of Education, Tongji University, Shanghai 200092, China.
Sinopec Petroleum Engineering Design Co., Ltd., Dongying 257000, China.
Materials (Basel). 2023 Aug 28;16(17):5872. doi: 10.3390/ma16175872.
The water-sensitive effect of expansive soil (ES) poses a serious challenge to the safety and durability of infrastructure. To reduce the effect of water sensitivity on expansive soil, a new powder soil passivator with polyacrylic (PA) as the main component was proposed. In this paper, a series of macroscopic and microscopic tests were conducted to evaluate the water-sensitive passivation effect and mechanism of PA-ES composites. The results showed that PA significantly attenuated the water sensitivity of ES. With the increase in PA content in the PA-ES composites, the water sensitivity of the composites decreased, swelling and shrinkage deformation decreased, and the strength of the composites increased significantly. In addition, when the content of PA in the PA-ES composite is 6%, it can significantly alleviate the deformation of the composite and improve the saturated shear strength of the composite, meeting the requirements of ES engineering disposal. Finally, the results show that the mechanism of PA passivation of ES water-sensitive effect mainly includes adsorption, binding, and filling. The study shows that PA has a broad engineering application prospect as an ES passivator.
膨胀土(ES)的水敏效应给基础设施的安全和耐久性带来了严峻挑战。为降低水敏性对膨胀土的影响,提出了一种以聚丙烯酸(PA)为主要成分的新型粉状土壤钝化剂。本文进行了一系列宏观和微观试验,以评估PA-ES复合材料的水敏钝化效果及机理。结果表明,PA显著减弱了ES的水敏性。随着PA-ES复合材料中PA含量的增加,复合材料的水敏性降低,膨胀和收缩变形减小,复合材料强度显著提高。此外,当PA-ES复合材料中PA含量为6%时,可显著减轻复合材料的变形并提高其饱和抗剪强度,满足膨胀土工程处置要求。最后,结果表明PA对ES水敏效应的钝化机理主要包括吸附、粘结和填充。研究表明,PA作为膨胀土钝化剂具有广阔的工程应用前景。