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聚乙烯醇改良高原黏土水稳定性实验研究
引用本文:李中尧,李文炜,史海平,赵哲苇,王保田,王培清.聚乙烯醇改良高原黏土水稳定性实验研究[J].科学技术与工程,2022,22(3):1205-1211.
作者姓名:李中尧  李文炜  史海平  赵哲苇  王保田  王培清
作者单位:西藏农牧学院水利土木工程学院;河海大学 岩土力学与堤坝工程教育部重点实验室;河海大学 江苏省岩土工程技术工程研究中心
基金项目:西藏自治区自然基金重点项目(XZ 2019 ZR G-56(Z));西藏农牧学院第四批柔性人才引进项目(藏东南地区粗颗粒混合土力学性质研究)
摘    要:为研究聚乙烯醇(PVA)对西藏地区黏土的力学性质改良效果,本文以高分子聚合物PVA为研究对象,改良藏东南地区高原黏土,通过无侧限抗压强度试验,研究PVA的改良效果,在干湿循环及浸水条件下探讨改良土的水稳定性,并利用扫描电镜研究PVA改良黏土的固化机理,结果表明:PVA的加入对黏土的抗压强度及水稳性存在显著影响,PVA掺量越大,黏土干湿循环及浸水后无侧限抗压强度越高,当掺量为0 %-0.83 %时,改良土强度上升最快,而后随着掺量的增加,无侧限抗压强度增长变缓,PVA凝胶脱水后形成弹性立体丝网不再溶于冷水,有效限制土颗粒的位移,使改良土具有良好的抗压强度及水稳性。

关 键 词:聚乙烯醇  高原黏土  无侧限抗压强度  干湿循环
收稿时间:2021/4/20 0:00:00
修稿时间:2021/11/9 0:00:00

Experimental study on water stability of plateau clay improved by polyvinyl alcohol
Li Zhongyao,Li Wenwei,Shi Haiping,Zhao Zhewei,Wang Baotian,Wang Peiqing.Experimental study on water stability of plateau clay improved by polyvinyl alcohol[J].Science Technology and Engineering,2022,22(3):1205-1211.
Authors:Li Zhongyao  Li Wenwei  Shi Haiping  Zhao Zhewei  Wang Baotian  Wang Peiqing
Institution:Department of Water Conservancy and Civil Engineering, Tibet Agricultural and Animal Husbandry University
Abstract:In order to study the effect of polyvinyl alcohol (PVA) on the improvement of the mechanical properties of clay in Tibet. Polymer polyvinyl alcohol (PVA) was used as the research object to improve the plateau clay in southeastern Tibet. The unconfined compressive strength test was used to study the improvement effect of PVA and explore the water stability of the improved soil under dry-wet cycles and immersion conditions. The scanning electron microscopy (SEM) was used to study the solidification mechanism of PVA-improved clay. The results show that the addition of PVA has a significant effect on the unconfined compressive strength and water stability of the clay. The greater the amount of PVA added, the higher the unconfined compressive strength of the clay after dry-wet cycles and immersion in water. When the amount is 0%-0.83%, the strength of the modified soil increased fastest, and then the growth of unconfined compressive strength decreased with the increasing amount. After the PVA gel is dehydrated, an elastic three-dimensional mesh was formed and no longer dissolved in cold water. The displacement of soil particles was effectively restricted and the unconfined compressive strength and water stability of improved clay was improved.
Keywords:Polyvinyl alcohol  plateau clay  unconfined compressive strength  dry and wet cycle
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