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Assessment of the correlation between grain angularity parameter and friction index of sand containing low plastic fines

机译:评估含有低塑料细粉的砂晶角参数与摩擦指数的相关性

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摘要

This paper describes a fundamental research to explore the impact of grain angularity on theinstability and steady state friction angles of binary mixtures through laboratory triaxial compression tests performed on three different sands named as Chief sand "CS", Fontainebleau sand "FS" and Hostun sand "HS" mixed with low plastic Chief silt in the range of F_c=0% to 30%. The silty sand samples were prepared with dry funnel pluviation and subjected to three different initial confining pressures (P′_c=100 kPa, 200 kPa and 300 kPa). The obtained test results indicate that the low plastic fines content has a significant influence on the instability friction angle (Φ_(ins)). steady state friction angle (Φ_(ss)) and angularity ratio (A_r=A_(hs)/A_(mix)) of the used materials. New proposed parameter named as friction index (Fl= (Φ_(ss)- Φ_(inis))/ Φ_(ss)) is suggested to evaluate the instability zone of the tested materials. Indeed, the friction index increases with the increase of fines content for the silty sand soils. Moreover, the obtained results demonstrate clearly that the instability and steady state friction angles could be correlated with the angularity ratio and friction index. The angularity ratio and friction index appear as appropriate parameters to identify the undrained instability zones of silty sand.
机译:本文介绍了一种基本的研究,探讨了谷物角度对恒定性和稳态混合物的稳态摩擦角度通过实验室三轴压缩试验对三种不同的沙滩,枫丹白露沙子“FS”和Hostun Sand“进行了实验室三轴压缩试验对二元混合物的影响。 HS“与低塑料主要淤泥混合在F_C = 0%至30%的范围内。用干漏斗浆化制备粉状沙子样品,并进行三种不同的初始限制压力(P'_c = 100kPa,200kPa和300kPa)。所获得的测试结果表明,低塑料细粒含量对不稳定摩擦角(φ_(INS))具有显着影响。使用的材料的稳态摩擦角(φ_(ss))和角度比(a_r = a_(hs)/ a_(mix))的使用。建议将新的提出参数命名为摩擦索引(FL =(φ_(φ_(φ_(φ_))/φ_(ss))以评估测试材料的不稳定区。实际上,摩擦指数随着粉状土壤的罚款含量的增加而增加。此外,所得结果显然表明,不稳定性和稳态摩擦角可以与角度比和摩擦指数相关。角度比和摩擦指数显示为适当的参数,以识别粉状砂的未造成不稳定区域。

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