土工格室加筋红粘土路基性能研究

IF 2.8 2区 工程技术 Q2 ENGINEERING, GEOLOGICAL
X. W. Luo, Z. Lu, J. B. Zhang, H. L. Yao
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引用次数: 0

摘要

为了研究土工格室加固红粘土路基的效果,对红粘土路基采用了三种对比处理方案。现场试验采用了Benkelman梁、便携式落重偏转仪、动力锥贯入仪和标准车辆荷载试验等多种路基试验方法。试验结果表明,土工格室在红粘土路基中的应用可以提高路基的整体刚度和强度。对土工格室在路基中的作用机理进行了研究。土工格室可以对路基土提供额外的约束。与未加筋土工格室的红粘土路基相比,加筋0.1 m高土工格室和0.05 m高土工格室的红粘土路基的回弹模量分别提高了65%和33%,动力模量分别提高了69%和38%,侵彻量分别降低了51.7%和40.4%。土工格室加固路基后,在路基中形成一层硬壳层。土工格室加筋层主要起应力扩散作用。它不仅可以减小路基的附加应力,而且可以减小车辆荷载的影响深度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on performance of geocell-reinforced red clay subgrade
Three comparative treatment plans are used in red clay subgrade, in order to research the effect of red clay subgrade reinforced with geocell. Multiple subgrade test methods including Benkelman beam, portable falling weight deflectometer, dynamic cone penetrometer and standard vehicle load tests are adopted in the field tests. Test results show that the application of geocell in red clay subgrade can enhance the overall stiffness and strength of the subgrade. The mechanism of geocell in the subgrade is studied. Geocell can provid added confinement on the surbgrade soil.Compared with the red clay subgrade without geocell-reinforcement, the rebound modulus of the red clay subgrade reinforced with 0.1-m-height geocell and 0.05-m-height geocell show a 65% and 33% increase, the dynamic modulus increase by 69% and 38% and the penetrations decrease by 51.7% and 40.4%, respectively. A hard shell layer is formed in the subgrade, after the surbgrade is reinforced with the geocell. Geocell reinforced layer plays mainly the role of stress diffusion. It not only can reduce the additional stress in the subgrade, but also can diminish the influence depth of the vehicle load.
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来源期刊
Geosynthetics International
Geosynthetics International ENGINEERING, GEOLOGICAL-GEOSCIENCES, MULTIDISCIPLINARY
CiteScore
6.90
自引率
20.00%
发文量
91
审稿时长
>12 weeks
期刊介绍: An online only, rapid publication journal, Geosynthetics International – an official journal of the International Geosynthetics Society (IGS) – publishes the best information on current geosynthetics technology in research, design innovation, new materials and construction practice. Topics covered The whole of geosynthetic materials (including natural fibre products) such as research, behaviour, performance analysis, testing, design, construction methods, case histories and field experience. Geosynthetics International is received by all members of the IGS as part of their membership, and is published in e-only format six times a year.
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