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首页> 外文期刊>KSCE journal of civil engineering >Constitutive Behavior of Binary Mixtures of Kaolin and Glass Beads in Direct Shear
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Constitutive Behavior of Binary Mixtures of Kaolin and Glass Beads in Direct Shear

机译:高岭土与玻璃微珠二元混合物在直接剪切作用下的本构行为

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Composite soils having a wide range of particle size may be the most commonly encountered materials in geotechnical engineering practice. This study involves 21 direct shear tests to investigate the constitutive behavior of composite soils within the normal stress range from 50 to 200 kPa. The samples are mixtures of fine (kaolin) and coarse (glass beads) fractions at various proportions. The properties of the samples considered in the investigation are particle size distribution, water content of sheared specimens, structural features of shear surface and residual shear strength. It is shown that the particle size distribution influences the void ratio produced with the same compaction effort. Increasing fine fraction from zero to a threshold value (approximately 20-30%) causes a decrease in void ratio of the mixture. Beyond this threshold, a further increase of fine fraction causes an increase in void ratio. High proportion of fine fraction causes: (1) lower water content of shear zones relative to outer zones, (2) densification process within shear zone, (3) well slickensided shear surfaces, and (4) shearing in sliding mode and hence low residual shear strength.
机译:在土力工程实践中,具有广泛粒径范围的复合土壤可能是最常见的材料。这项研究涉及21个直接剪切试验,以研究在50至200 kPa的正应力范围内的复合土的本构行为。样品是各种比例的细(高岭土)和粗(玻璃珠)馏分的混合物。在研究中考虑的样品的性质是粒度分布,剪切样品的含水量,剪切表面的结构特征和残余剪切强度。结果表明,粒度分布会影响以相同压实力产生的空隙率。将细粒分数从零增加到阈值(大约20-30%)会导致混合物的空隙率降低。超过该阈值,细小部分的进一步增加导致空隙率的增加。细粒比例高导致:(1)相对于外部区域,剪切区域的含水量较低;(2)剪切区域内的致密化过程;(3)光滑的剪切面;(4)滑动模式剪切,因此残留量低剪切强度。

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