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首页> 外文期刊>Canadian Geotechnical Journal >Modelling resilient modulus seasonal variation of silty sand subgrade soils with matric suction control
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Modelling resilient modulus seasonal variation of silty sand subgrade soils with matric suction control

机译:采用Matric抽吸控制建模弹性模量季节变化

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摘要

The resilient modulus of unbound materials is an important parameter in the mechanistic design of pavements. Although unbound layers are frequently in a partially saturated state, a total stress approach is conventionally used in modeling the material behaviour, and therefore pore pressure effects are not considered. In fine-grained unbound materials, the saturation state can affect their mechanical behaviour due to pore pressure effects. In this study a modified test procedure and a predictive resilient modulus model that takes into account the subgrade soil matric suction as a stress state variable is presented. Two different silty sand subgrade materials were tested in unsaturated conditions using a series of repeated load triaxial tests under controlled pore suction conditions to study its influence on the resilient modulus. The test data were further used to obtain the resilient modulus model regression parameters that account for moisture content variations through the matric suction parameter. Generally, the prediction model could effectively capture the resilient modulus behaviour of the subgrades with respect to changes in the normal stress state and the matric suction. Given the completeness of this method, this prediction model is recommended as an improved approach in capturing the moisture content effects on the material stiffness properties.
机译:未结合材料的弹性模量是路面机械设计中的重要参数。尽管未结合的层经常处于部分饱和状态,但通常用于建模材料行为,因此不考虑孔隙压力效应的总应力方法。在细粒的未结合材料中,饱和状态可能会影响其由于孔隙压力效应而产生的力学行为。在该研究中,提出了一种修改的测试程序和预测的弹性模量模型,其考虑了作为应力状态变量的转基地原始吸力。使用受控孔隙抽吸条件下的一系列重复载荷三轴试验在不饱和条件下测试两种不同的粉状砂路基材料,以研究其对弹性模量的影响。测试数据进一步用于获得通过Matric吸入参数的湿度含量变化的弹性模量模型回归参数。通常,预测模型可以有效地捕获与正常应力状态的变化和测力的变化的子化学的弹性模量行为。鉴于该方法的完整性,推荐该预测模型作为捕获对材料刚度特性的水分含量影响的改进方法。

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