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首页> 外文期刊>Journal of materials in civil engineering >Shakedown Behavior of Yellow River Alluvial Silt Stabilized with Lignin-Lime Combined Additive
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Shakedown Behavior of Yellow River Alluvial Silt Stabilized with Lignin-Lime Combined Additive

机译:木质素-石灰复合添加剂稳定黄河冲积淤泥的沉降特性

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The utilization of Yellow River alluvial silt as the main filler for railway embankments can lead to a series of embankment problems. Therefore, the silt must be improved before it can be used. In this paper, a series of cyclic triaxial tests were performed to find an optimum percentage of composition of lignin-lime combined additive. According to the shakedown concept, permanent deformation of silt samples stabilized by different proportions of additives was classified and evaluated. The recommended proportions from unconfined compressive strength tests were verified, and the optimal proportion of additive was obtained. In addition, under different confining pressures and relative compactions, shakedown behavior of stabilized silt samples with optimal additive proportion was investigated. The experimental results revealed that the plastic shakedown limit and plastic creep limit of silt samples with 6% lignin and 3% lime were 4 and 8 times those of untreated silt samples, respectively. With the increase of confining pressure and relative compaction, the permanent deformation of the stabilized silt was reduced, and its shakedown limits were enhanced.
机译:利用黄河冲积粉作为铁路路基的主要填充物会导致一系列路基问题。因此,必须在使用前改善淤泥。在本文中,进行了一系列的循环三轴试验,以找到木质素-石灰组合添加剂的最佳组成百分比。根据沉降概念,对通过不同比例的添加剂稳定的淤泥样品的永久变形进行了分类和评估。验证了无限制抗压强度试验的推荐比例,并获得了最佳的添加剂比例。此外,在不同的围压和相对压实条件下,研究了具有最佳添加剂比例的稳定粉砂样品的沉降特性。实验结果表明,含6%木质素和3%石灰的淤泥样品的塑性减振极限和塑性蠕变极限分别是未处理淤泥样品的4倍和8倍。随着围压的增加和相对压实,稳定粉土的永久变形减小,其沉降极限增大。

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