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Experimental investigation on static and dynamic resilient moduli of compacted fine soil

机译:压实细土静,动弹性模量的试验研究

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摘要

To investigate the static and dynamic resilient modulus of fine soil, and adapting to the new design code and maintenance system of highway subgrade in China, a series of static and dynamic tests were carried out according to the standard laboratory test methods (JTG E40-2007 and JTG D30-2015, respectively). The effects of initial water content, compactness and freeze-thaw cycles on the static and dynamic resilient moduli of fine soil were investigated and analyzed. Experimental test results show that with increasing water content, dry density and freeze-thaw cycles, the static moduli reduces about 10.2%~40.0%, 14.4%~45.5%, and 24.0%~50.3%, and dynamic moduli reduces about 10.9%~90.8%, 2.5%~38.4%, and 0.0%~46.0%, respectively. Then, the empirical mathematical relationship between static and dynamic resilient moduli was established under different water content, dry density and freeze-thaw cycles. The investigation results can be used to determine the dynamic modulus of fine soil by widely used static modulus, which could meet the requirement of adopting dynamic modulus index in new specification.
机译:为了研究细土的静,动态弹性模量,并适应中国公路路基的新设计规范和养护体系,根据标准实验室测试方法(JTG E40-2007)进行了一系列静,动态试验。和JTG D30-2015)。研究并分析了初始含水量,密实度和冻融循环对细土静态和动态弹性模量的影响。实验结果表明,随着含水量,干密度和冻融循环次数的增加,静态模量降低约10.2%〜40.0%,14.4%〜45.5%和24.0%〜50.3%,动态模量降低约10.9%〜分别为90.8%,2.5%〜38.4%和0.0%〜46.0%。然后,建立了不同含水量,干密度和冻融循环条件下静态弹性模量与动态弹性模量之间的经验数学关系。研究结果可用于广泛使用的静态模量来确定细土的动态模量,可以满足新规范中采用动态模量指数的要求。

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