橡胶颗粒包埋对水泥稳定粘土无侧限抗压强度和干湿耐久性的影响

J. Yadav, S. K. Tiwari
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引用次数: 37

摘要

研究了废橡胶粉和水泥包埋对粘性土无侧限抗压强度和干湿耐久性的影响。胶粉和水泥的添加量分别为2.5% ~ 10%和3% ~ 6%。研究结果表明,橡胶屑掺入对水泥稳定粘土的无侧限抗压强度、破坏时轴向应变、吸能能力和干湿耐久性均有影响。研究表明,随着水泥稳定粘土中橡胶颗粒含量的增加,无侧限抗压强度降低,但会使水泥稳定粘土的脆性向延性转变。将橡胶粉掺量限制在5%以内,可提高试件峰值轴向应力对应的轴向应变和吸能能力。随着橡胶粉掺量的增加,水泥稳定粘土的失重率增大。随着养护时间的延长,掺橡胶屑的水泥稳定粘土的失重量减小。此外,掺入6%水泥和5%橡胶屑的粘性土90天养护试样的减重符合道路路面施工中用作基层、次基层和肩的材料的推荐要求。最重要的是,这种危险废物的利用/处置减少了其对环境和健康的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of inclusion of crumb rubber on the unconfined compressive strength and wet-dry durability of cement stabilized clayey soil
In the present study, the effect of inclusion of waste crumb rubber and cement on the unconfined compressive strength and wet-dry durability of clayey soil has been investigated. Crumb rubber and cement were added to clayey soil at ranges of 2.5%-10% and 3%-6% respectively. The results of the investigation revealed that the incorporation of crumb rubber influenced the unconfined compressive strength, axial strain at failure, energy absorption capacity and wet-dry durability of the cement-stabilized clay. The study reveals that as the content of crumb rubber in the cement-stabilized clayey soil increases the unconfined compressive strength decreases but prosperously changes the behavior of the cement-stabilized clay from brittle to ductile. The axial strain corresponding to peak axial stress and energy absorption capacity of the specimens can be increased by limiting the content of crumb rubber up to 5%. The weight loss of the cement-stabilized clay mixed with crumb rubber increases as the content of crumb rubber increases. With the prolongation of the curing period, the weight loss of cement-stabilized clay mixed with crumb rubber decreases. Further, the weight loss of 90 days cured specimens of clayey soil incorporated with 6% cement and crumb rubber up to 5% meets the recommendation of the material to be used in construction of road pavements as a base, sub-base, and shoulder. Most importantly, the utilization/disposal of this hazardous waste material reduces its impact on environment and health.
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