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冻融循环作用下聚苯乙烯泡沫颗粒轻质土的物理力学性质

Physical and Mechanical Properties of Expanded Polystyrene (EPS) Particle Lightweight Soil under Freeze-Thaw Cycles.

作者信息

Mei Lifang, Gu Haoyu, He Jun, Cheng Tianbao

机构信息

School of Civil Engineering, Architectural and Environment, Hubei University of Technology, Wuhan 430068, China.

Hubei Ecological Road Engineering Technology Research Center, Wuhan 430068, China.

出版信息

ACS Omega. 2023 Aug 16;8(34):31365-31372. doi: 10.1021/acsomega.3c03823. eCollection 2023 Aug 29.

Abstract

In seasonally frozen regions, the bearing capacity of soil decreases and gradually deteriorates after undergoing freeze-thaw cycles. To resolve this problem, based on the idea of frost-resistant filling materials, a filling scheme of expanded polystyrene (EPS) particles lightweight soil in cold regions was proposed. Unconfined compressive strength, direct shear, and micro-SEM tests were carried out to study the physical and mechanical properties of EPS particles lightweight soil under freeze-thaw cycles. The results indicate that the EPS particle lightweight soil has good frost resistance and can be used as frost-resistant filling material in cold regions. Under freeze-thaw cycles, EPS particle lightweight soil maintains good integrity; EPS particles can effectively reduce the frost heave rate, mass loss rate, and compressive strength loss rate of lightweight soil. The compressive strength depends on the EPS and cement contents: it decreases with an increase in the EPS content and increases with an increase in the cement content. The strength loss rate decreases with an increase in both. When the content of EPS is larger (more than 2%), the soil cement bound with EPS particles is limited, and the performance of lightweight soil decreases. The shear strength and cohesion decrease with an increase in freeze-thaw cycles and EPS content, and the internal friction angle follows no obvious rule with regard to the increase in freeze-thaw cycles but decreases with an increase in the EPS content. Based on the experimental results, an empirical formula for the compressive strength of EPS particle lightweight soil under freeze-thaw cycles was proposed. This study can provide a reference for the engineering design and application and provide new ideas for resolving freeze-thaw problems in construction engineering in cold regions.

摘要

在季节性冻土地区,土壤的承载能力会下降,并且在经历冻融循环后会逐渐恶化。为了解决这个问题,基于抗冻填充材料的理念,提出了寒冷地区聚苯乙烯泡沫(EPS)颗粒轻质土的填充方案。进行了无侧限抗压强度、直剪试验和微观扫描电镜试验,以研究冻融循环作用下EPS颗粒轻质土的物理力学性质。结果表明,EPS颗粒轻质土具有良好的抗冻性,可作为寒冷地区的抗冻填充材料。在冻融循环作用下,EPS颗粒轻质土保持良好的完整性;EPS颗粒能有效降低轻质土的冻胀率、质量损失率和抗压强度损失率。抗压强度取决于EPS和水泥含量:随着EPS含量的增加而降低,随着水泥含量的增加而提高。强度损失率随两者的增加而降低。当EPS含量较大(超过2%)时,与EPS颗粒结合的土水泥有限,轻质土性能下降。抗剪强度和黏聚力随冻融循环次数和EPS含量的增加而降低,内摩擦角随冻融循环次数的增加无明显规律,但随EPS含量的增加而减小。基于试验结果,提出了冻融循环作用下EPS颗粒轻质土抗压强度的经验公式。本研究可为工程设计与应用提供参考,为解决寒冷地区建筑工程中的冻融问题提供新思路。

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