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化学侵蚀与干湿循环作用下泡沫轻质土强度退化及其经验模型

Strength Degradation of Foamed Lightweight Soil Due to Chemical Erosion and Wet-Dry Cycle and Its Empirical Model.

作者信息

Zhang Zhen, Zhang Yonggang, Ye Guanbao, Zhang Shenyi, Shen Honghui, Chen Yonggui

机构信息

Key Laboratory of Geotechnical and Underground Engineering of Ministry of Education, Department of Geotechnical Engineering, Tongji University, Shanghai 200092, China.

Shanghai Baosteel New Building Materials Technology Co., Ltd., Shanghai 200942, China.

出版信息

Materials (Basel). 2023 Sep 30;16(19):6505. doi: 10.3390/ma16196505.

Abstract

Foamed lightweight soils (FLS) have been extensively used as backfill material in the construction of transportation infrastructures. However, in the regions consisting of salt-rich soft soil, the earth structure made by FLS experiences both fluctuation of groundwater and chemical environment erosion, which would accelerate the deterioration of its long-term performance. This study conducted laboratory tests to explore the deterioration of FLS in strength after being eroded by sulfate attack and/or wet-dry cycling, where the influencing factors of FLS density, concentration of sulfate solution, and cation type (i.e., Na and Mg) were considered. An unconfined compressive test (UCT) was conducted, and the corrosion-resistant coefficient (CRC) was adopted to evaluate the erosion degree after the specimens experienced sulfate attack and/or dry-wet cycling for a certain period. The research results show that the erosion of the FLS specimen under the coupling effect of sulfate attack and dry-wet cycling was more remarkable than that only under chemical soaking, and NaSO solution had a severe erosion effect as compared with MgSO solution when other conditions were kept constant. An empirical model is proposed based on the test results, and its reliability has been verified with other test results from the literature. The proposed model provides an alternative for engineers to estimate the strength deterioration of FLS on real structures in a preliminary design.

摘要

泡沫轻质土(FLS)已被广泛用作交通基础设施建设中的回填材料。然而,在富含盐分的软土地区,由泡沫轻质土构成的土体结构会受到地下水波动和化学环境侵蚀的双重影响,这将加速其长期性能的劣化。本研究通过室内试验,探讨了泡沫轻质土在遭受硫酸盐侵蚀和/或干湿循环侵蚀后的强度劣化情况,其中考虑了泡沫轻质土密度、硫酸盐溶液浓度和阳离子类型(即Na和Mg)等影响因素。进行了无侧限抗压试验(UCT),并采用抗腐蚀系数(CRC)来评估试件在经历一定时间的硫酸盐侵蚀和/或干湿循环后的侵蚀程度。研究结果表明,泡沫轻质土试件在硫酸盐侵蚀和干湿循环耦合作用下的侵蚀比仅在化学浸泡作用下更为显著,且在其他条件保持不变时,NaSO溶液比MgSO溶液具有更严重的侵蚀作用。基于试验结果提出了一个经验模型,并用文献中的其他试验结果验证了其可靠性。所提出的模型为工程师在初步设计中估算实际结构中泡沫轻质土的强度劣化提供了一种选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ce0/10573975/53f1b5d944dd/materials-16-06505-g001.jpg

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