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Mechanical behaviour of Panzhihua iron tailings

机译:攀枝花铁尾矿的力学行为

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Safety problems have concerned many researchers studying tailings dams in recent years, as they have a high risk of failure due to liquefaction. Existing analysis of liquefaction in tailings within a critical state framework has relied on the critical state line (CSL) being unique in the volumetric plane. However, recent advances have highlighted a so-called "transitional" behaviour in which the location of the normal compression line (NCL) and CSL is a function of the density of the soils at deposition. This paper presents a detailed investigation of the mechanics of tailings taken from three locations of an iron tailings impoundment. Reconstituted samples were prepared by different methods and at different densities. No transitional behaviour was found, although the results show that the rate of convergence of the compression curves changes, with the finest pond material reaching a unique NCL earliest. The preparation method was found not to have a large effect on the behaviour for these tailings. Unique CSLs could be clearly identified for all the three tailings, but with different shapes, giving rise to a changing susceptibility to liquefaction. This susceptibility tends to increase from the pond to the upper beach.
机译:安全问题涉及近年来尾矿坝研究尾矿坝的研究人员,因为由于液化,它们具有很高的失败风险。在临界状态框架内的尾矿中的液化分析依赖于体积平面中唯一的临界状态线(CSL)。然而,最近的进展突出了一个所谓的“过渡”行为,其中正常压缩线(NCL)和CSL的位置是沉积中土壤密度的函数。本文介绍了从铁尾气蓄积的三个地点采取的尾矿机械的详细调查。通过不同的方法和不同密度制备重构样品。没有发现过渡行为,尽管结果表明,压缩曲线的收敛速度变化,最早的池塘材料最早达到独特的NCL。发现制备方法对这些尾矿的行为产生了很大的影响。可以针对所有三个尾矿清楚地识别独特的CSL,但具有不同的形状,从而产生对液化的不断变化的易感性。这种易感性往往从池塘到上海滩增加。

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