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Experimental study of primary consolidation time for structured and destructured clays

机译:结构化和非结构化粘土初固结时间的试验研究

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Incremental load one-dimensional consolidation tests were performed on undisturbed and reconstituted specimens of seven natural clays with a predominant clay mineral of illite. Both the settlement and the base pore pressure under step load increments were measured during the dissipation of pore pressure. The change law in the primary consolidation time determined by the pore pressure dissipation with increasing stress level is found to be contrary to that determined by the Taylor method and the Casagrande method which are often used in laboratory tests and engineering practice. The primary consolidation time determined based on the time-dependent settlement observations is smaller than that determined by the pore pressure dissipation for the natural clays investigated. Pore pressure is generally not completely dissipated at the primary consolidation time determined by the Taylor method and the Casagrande method. Such remaining pore pressure may reach a quite high percentage of the step load increment for the investigated specimens. The settlement determined by the Taylor method and the Casagrande method may be significantly underestimated due to the dissipation of remaining pore pressure. Attention should be paid to the possible distortion on consolidation behavior in laboratory tests and engineering practice due to the remaining pore pressure and the associated settlement. (C) 2015 Elsevier B.V. All rights reserved.
机译:在七种天然粘土与主要的伊利石粘土矿物的原状和重构试样上进行了增量载荷一维固结试验。在孔隙压力消散过程中,测量了逐步增加载荷下的沉降和基础孔隙压力。发现由孔隙压力耗散随应力水平增加而确定的一次固结时间的变化规律与在实验室测试和工程实践中经常采用的泰勒方法和卡萨格兰德方法所确定的变化规律相反。根据与时间有关的沉降观测值确定的一次固结时间小于所研究的天然粘土的孔隙压力耗散所确定的时间。在通过泰勒方法和卡萨格兰德方法确定的初次固结时间,孔隙压力通常不能完全消除。对于所研究的样品,这样的残余孔隙压力可能会达到很高的百分比。由于剩余孔隙压力的消散,通过泰勒方法和卡萨格兰德方法确定的沉降可能会大大低估。由于剩余的孔隙压力和相关的沉降,应注意在实验室测试和工程实践中固结行为可能发生的变形。 (C)2015 Elsevier B.V.保留所有权利。

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