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Grainsize dependence of clastic yielding in unsaturated granular soils

机译:非饱和粒状土壤弹性屈服的粒度依赖性

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摘要

We use a recent reformulation of the Breakage Mechanics theory explaining comminution in wet granular assemblies. By using a dataset for sands, we quantify the relation between a geometric descriptor of the assembly (i.e., the mean grainsize) and the model constants that control the suction air-entry value and the stress threshold at the onset of crushing. Such relations are used to define two contrasting scenarios for the coupling between degree of saturation and yielding. In the first scenario, the suction air-entry value scales inversely with the mean grainsize, while the energy input for comminution is assumed to be independent of the size of the particles. The outcome of this assumption is that changes in degree of saturation are predicted to play a more intense role in finer gradings. Conversely, if we assume that also the energy input for grain breakage scales inversely with the size of the particles, the effect of the degree of saturation is predicted to be stronger in coarser assemblies. In other words, the deterioration of the yielding stress due to grain-size scaling effects is predicted to exacerbate the water sensitivity of unsaturated crushable soils. This result provides an interpretation for the evidence that solid-fluid interactions have a noticeable role in the compression response of assemblies made of coarse brittle particles (e.g., gravels or rockfill), while they tend to play little or no role in granular materials characterized by a finer grading (e.g., sands).
机译:我们使用了断裂力学理论的最新公式,解释了湿颗粒组件中的粉碎。通过使用沙子的数据集,我们可以量化装配体的几何描述符(即平均晶粒尺寸)与模型常数之间的关系,该模型常数可控制破碎开始时的吸气入口值和应力阈值。这种关系用于定义饱和度和屈服度之间耦合的两种对比方案。在第一种情况下,吸气进入值与平均晶粒尺寸成反比,而用于粉碎的能量输入则与颗粒尺寸无关。该假设的结果是,饱和度的变化预计将在更精细的等级中扮演更重要的角色。相反,如果我们假设破损的能量输入也与粒子的大小成反比,则在较粗的组件中,饱和度的影响预计会更大。换句话说,预计由于晶粒尺寸结垢效应引起的屈服应力的恶化会加剧不饱和可破碎土壤的水敏感性。该结果为以下证据提供了解释:固液相互作用在由粗碎颗粒(例如,砾石或堆石料)制成的组件的压缩响应中具有显着作用,而它们在以以下特征为特征的粒状材料中则几乎没有作用或没有作用更好的等级(例如沙子)。

著录项

  • 来源
    《Granular matter》 |2014年第4期|469-483|共15页
  • 作者

    Y. D. Zhang; G. Buscarnera;

  • 作者单位

    Department of Civil and Environmental Engineering, Northwestern University, 2145 Sheridan Road, Evanston, IL 60208, USA;

    Department of Civil and Environmental Engineering, Northwestern University, 2145 Sheridan Road, Evanston, IL 60208, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Unsaturated soils; Particle breakage; Grainsize effects; Capillary effects; Yielding;

    机译:不饱和土壤;颗粒破裂;粒度影响;毛细作用;屈服;

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