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Relationship between measured plastic limit and plastic limit estimated from undrained shear strength, water content ratio and liquidity index

机译:根据不排水剪切强度,含水率和流动性指数估算的塑性极限与塑性极限之间的关系

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摘要

The detection of the plastic limit of clays is subject to human error. Several attempts have been made to correlate across studies the geotechnical properties of fine-grained soils (water content, liquidity index, shear strength, etc.). Based on the premise that the liquidity index and water content ratio can be correlated directly, an alternative method to obtain indirectly the plastic limit is suggested here. The present study investigated 40 natural clayey samples of various mineralogies and origins and other publicly available data, where Atterberg limits and undrained shear strength values obtained with the vane shear tests were given. The liquidity index and water-content ratio correlate very well for defined undrained shear strength values of the clays. Solving the liquidity index equation for the plastic limit, estimated plastic limit values obtained by the liquidity index/water-content ratio relationship were compared with laboratory plastic-limit values. Preliminary results based on 62 values show an exponential trend with a multiple regression coefficient of 0.79. The data need to be confirmed on a larger database, however.
机译:黏土塑性极限的检测容易出错。在整个研究中,已经进行了一些尝试来关联细粒土壤的岩土特性(水含量,流动性指数,剪切强度等)。在可以将流动性指数和含水率直接相关的前提下,本文提出了一种间接获得塑性极限的替代方法。本研究调查了40种不同矿物学和起源的天然粘土样品以及其他可公开获得的数据,其中给出了通过叶片剪切试验获得的阿特伯格极限值和不排水剪切强度值。对于确定的粘土不排水抗剪强度值,流动性指数和水含量比具有很好的相关性。求解塑性极限的流动性指数方程,将通过流动性指数/水含量比关系获得的估计塑性极限值与实验室塑性极限值进行比较。基于62个值的初步结果显示出指数趋势,多重回归系数为0.79。但是,需要在更大的数据库上确认数据。

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