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Possible estimation of resilient modulus of fine-grained soils using a dynamic lightweight cone penetrometer

机译:用动态轻质锥形仪测量细粒土的弹性模量的可能估算

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摘要

Resilient modulus is an important parameter to characterise the resilient behaviour of pavement materials. Resilient modulus can be determined in the laboratory from repeated load triaxial test and is defined as the ratio of deviator stress to recoverable strain. Inherently, it is a challenge to perform repeated load triaxial tests as a routine basic test due to its complicated, time-consuming and expensive procedure; hence, several empirical approaches to estimate the resilient modulus from other soil mechanical properties - California bearing ratio, unconfined compressive strength or physical properties - have been proposed. This study has investigated the application of a dynamic lightweight cone penetrometer for the estimation of the resilient modulus in the laboratory and field conditions for some Victorian fine-grained subgrade soils. The results show the possibility to estimate the resilient modulus of fine-grained soils using the dynamic lightweight penetration index at any moisture content (MC) from optimum MC to soaked conditions.
机译:弹性模量是表征路面材料的弹性行为的重要参数。可以在实验室中测定来自重复载荷三轴试验的弹性模量,并且定义为脱模应力与可回收菌株的比率。本质上,由于其复杂,耗时和昂贵的程序,在常规基础测试中执行重复载荷三轴试验是挑战;因此,已经提出了若干经验方法来估计来自其他土壤机械性能的弹性模量 - 加利福尼亚轴承比,不包含束缚的抗压强度或物理性质 - 已经提出。本研究研究了动态轻质锥形孔隙度计在实验室和现场条件下估算了一些维多利亚女王的细粒粒地降解的弹性模量。结果表明,使用任何水分含量(MC)的动态轻质渗透指数从最佳MC到浸湿条件,可以估算细粒土壤的弹性模量。

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