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MODIFYING A PLASTIC CLAY WITH CRUSHED GLASS: IMPLICATIONS FOR CONSTRUCTED FILLS

机译:用压碎玻璃改性塑料粘土:对构造填充的影响

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摘要

A laboratory study was conducted to evaluate the potential of 9.5mm-minus crushed glass (CG) to improve the physical and strength properties of a high plasticity soil (CH). The model soil used in this study, a kaolinite-bentonite mixture or "model" clay (MC), was chosen to represent the properties of naturally occurring fat clays, as well as to provide baseline data for future comparison of site-specific CH soils. Tests were performed on 100% MC and 80/20, 60/40, 40/60, 20/80 CG-MC (dry CG weight% reported first) blends using the CG previously evaluated by Grubb et al. (2006a). The most significant incremental increases in maximum dry density for standard (2.8 kN/m~3) and modified (2.5 kN/m3) Proctor compactive effort and decreases in moisture sensitivity (14 and 12%), respectively, were observed to occur with the addition of 40% CG. By a CG content of 40%, the effective friction angle increased by about 5° while the compressibility decreased by about 33%. Similar improvements of lesser magnitude occurred with additional incremental (20%) increases in CG content.
机译:进行了一项实验室研究,以评估9.5毫米以下的碎玻璃(CG)改善高塑性土壤(CH)的物理和强度特性的潜力。选择本研究中使用的模型土壤,即高岭石-膨润土混合物或“模型”粘土(MC),以代表天然脂肪粘土的特性,并提供基线数据,以便将来对特定地点的CH土壤进行比较。使用先前由Grubb等人评估的CG对100%MC和80 / 20、60 / 40、40 / 60、20 / 80 CG-MC(首先报告干CG重量%)共混物进行测试。 (2006a)。对于标准(2.8 kN / m〜3)和改性(2.5 kN / m3)的Proctor压实作用和对湿度的敏感性下降(14%和12%),最大干密度的最大增加分别被观察到。添加40%CG。 CG含量为40%时,有效摩擦角增加了约5°,而压缩率降低了约33%。随着CG含量的增加(20%)的增加,发生了较小幅度的类似改善。

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