Mechanical strength investigation of chemically reinforced sandy soil using organic copolymers for geotechnical engineering applications

M. Krishnan, Edreese Housni Alsharaeh
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Abstract

The chemical reinforcement of sandy soils is usually carried out to improve their properties and meet specific engineering requirements. Nevertheless, conventional reinforcement agents are often expensive; the process is energy-intensive and causes serious environmental issues. Therefore, developing a cost-effective, room-temperature-based method that uses recyclable chemicals is necessary. In the current study, poly (styrene-co-methyl methacrylate) (PS-PMMA) is used as a stabilizer to reinforce sandy soil. The copolymer-reinforced sand samples were prepared using the one-step bulk polymerization method at room temperature. The mechanical strength of the copolymer-reinforced sand samples depends on the ratio of the PS-PMMA copolymer to sand. The higher the copolymer-to-sand ratio, the higher the sample’s compressive strength. Sand (70 wt.%)-PS-PMMA (30 wt.%) sample exhibited the highest compressive strength of 1900 psi. The copolymer matrix enwraps the sand particles to form a stable structure with high compressive strengths.
岩土工程应用中使用有机共聚物化学加固砂土的机械强度研究
对砂土进行化学加固通常是为了改善其性能,满足特定的工程要求。然而,传统的加固剂通常价格昂贵,加固过程耗费能源,而且会造成严重的环境问题。因此,有必要开发一种成本效益高、基于室温且使用可回收化学品的方法。在目前的研究中,聚(苯乙烯-甲基丙烯酸甲酯)(PS-PMMA)被用作加固砂土的稳定剂。共聚物加固砂土样品是在室温下采用一步法批量聚合制备的。共聚物加固砂土样品的机械强度取决于 PS-PMMA 共聚物与砂土的比例。共聚物与砂的比例越高,样品的抗压强度就越高。砂(70 wt.%)-PS-PMMA(30 wt.%)样品的抗压强度最高,达到 1900 psi。共聚物基质将砂粒包裹起来,形成了具有高抗压强度的稳定结构。
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