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PVA-MgO复合材料改良砂土的试验研究

Experimental Study on PVA-MgO Composite Improvement of Sandy Soil.

作者信息

Li Zhongyao, Zhao Zhewei, Shi Haiping, Li Jiahuan, Zhao Cheng, Wang Peiqing

机构信息

Water Conservancy Civil Engineering Department, Tibet Agriculture and Animal Husbandry College, Linzhi 860100, China.

Tibet Construction Water Conservancy and Electric Power Engineering Technology Research Center, Linzhi 860100, China.

出版信息

Materials (Basel). 2022 Aug 16;15(16):5609. doi: 10.3390/ma15165609.

Abstract

Materials with violent hydration reaction such as cement are used to solidify sandy soil slopes, which will cause destructive damage to the ecology of the slopes. In this paper, polyvinyl alcohol (PVA) and activated magnesium oxide (MgO) are used to improve sandy soil, and the effects of the dosage and curing age of modifiers on the mechanical properties of solidified sandy soil are studied. The dry-wet durability of the composite improved sandy soil is analyzed using a dry-wet cycle test, and the improvement mechanism of PVA and activated magnesium oxide is revealed using an electron microscope. The results show that the curing effect of polyvinyl alcohol and activated magnesium oxide on sand particles is better than that of polyvinyl alcohol alone. The compressive strength of improved soil samples increases with the increase of curing time, and magnesium oxide as an improved material needs appropriate reaction conditions to give full play to its role. The compressive strength of composite improved samples increases first and then decreases during the dry-wet cycle. Through the observation of microstructure, it can be seen that the cementing material wraps and connects the sand particles, and the cementing material of the sample after the dry-wet cycle develops more completely; if the magnesium oxide content is high, cracks may appear inside the sample.

摘要

使用水泥等具有剧烈水化反应的材料来固化砂土边坡,会对边坡生态造成毁灭性破坏。本文采用聚乙烯醇(PVA)和活性氧化镁(MgO)对砂土进行改良,研究了改性剂用量和养护龄期对固化砂土力学性能的影响。通过干湿循环试验分析了复合改良砂土的干湿耐久性,并利用电子显微镜揭示了PVA和活性氧化镁的改良机理。结果表明,聚乙烯醇和活性氧化镁对砂粒的固化效果优于单独使用聚乙烯醇。改良土样的抗压强度随养护时间的增加而增大,氧化镁作为改良材料需要合适的反应条件才能充分发挥其作用。复合改良试样在干湿循环过程中抗压强度先增大后减小。通过微观结构观察可以看出,胶结材料包裹并连接砂粒,干湿循环后试样的胶结材料发育更完全;若氧化镁含量过高,试样内部可能出现裂缝。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4af/9412297/f0d6f8be9200/materials-15-05609-g001.jpg

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