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Slurry Deposition Method of Low-Plasticity Intermediate Soils for Laboratory Element Testing

机译:用于实验室元件测试的低塑性中间土的浆料沉积方法

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摘要

A repeatable preparation method is useful for investigating systematic variations in behavior across a range of soil types (e.g., gradation, plasticity) and test conditions (e.g., stress level, stress history). Existing methods for preparation of laboratory specimens can be generally categorized into those for cohesionless and cohesive soils, thereby focusing on a narrow range of soils and test conditions. The applicability of these conventional preparation techniques for soils with intermediate (or transitional) properties and behaviors are relatively unknown. In this study, a range of intermediate soils that are not amenable to traditional sand-like or claylike characterization are prepared using a slurry deposition technique and evaluated in oedemetric consolidation, undrained monotonic triaxial shear, and both undrained monotonic and undrained cyclic direct simple shear by three researchers at two separate universities. Results indicate that the slurry technique developed herein can produce uniform mixtures of nonplastic, low-plasticity, and high-plasticity soils, with repeatable behaviors obtained from singular mixtures for all test methods. Evaluation of specimen response across this range of soils exhibits systematic trends of increasing compressibility with increasing plasticity and a transition from dilative to contractive tendencies with increasing soil plasticity. Collectively, these results for synthetic mixtures of silica silt and kaolin clay suggest that the slurry deposition technique is applicable to fine-grained, intermediate soils across a range of plasticity from nonplastic to high-plasticity soils.
机译:可重复制备方法可用于研究一系列土壤类型(例如,灰度,塑性)和试验条件(例如,应力水平,应力历史)的行为的系统变化有用。制备实验室标本的现有方法通常可以分为粘合和粘性土壤的方法,从而专注于狭窄的土壤和测试条件。这些常规制剂技术对具有中间(或过渡)性质和行为的土壤的适用性相对未知。在该研究中,使用浆料沉积技术制备不适合传统的砂状或粘土状况的一系列中间土壤,并在OEDETRIC固结,未加工的单调三轴剪切中进行评估,并且未经调整的单调和未经涉及的循环直接简单剪切两个独立大学的三个研究人员。结果表明,本文开发的浆料技术可产生均匀的非塑料,低塑性和高可塑性土壤混合物,具有从所有测试方法的奇异混合物获得的可重复行为。在这一系列土壤中评价在这种土壤中的响应表现出增加压缩性的系统趋势,随着较大的可塑性和转变从扩张与不断的土壤可塑性的增强趋势。统称,这些硅氧化硅和高岭土合成混合物的结果表明,浆料沉积技术适用于一系列可塑性的细粒度,中间体土壤,从不塑性到高可塑性土壤。

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