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The relationship between suction and swelling properties in a heavily compacted unsaturated clay

机译:重压实的不饱和黏土的吸力和膨胀特性之间的关系

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In order to study the hydro-mechanical behaviour of highly compacted unsaturated clays used in engineered clay barriers for nuclear waste disposal, some experimental techniques for controlling suction were extended into the range of high suctions. The technique of control by imposing a given relative humidity was considered for very high suctions (several hundreds of MPa), and calibration data from the literature were examined. Some corrected values were proposed, based on a calibration made with sodium chloride. The extension of the osmotic technique to higher suctions was made, and a value of 10 MPa was attained, enlarging considerably the range of this method. The study of the water retention and swelling properties of the FoCa7 clay under controlled suction and zero applied stress is presented. A good continuity between the two methods of suction control was observed. Fairly reversible responses to suction cycles were observed, in terms of water content and volume change. During these changes, it was observed that the air volume remained constant. The reversibility is related to the predominant role of a saturated microstructural level, strongly influenced by the physico-chemical bonds existing between water and the active clay minerals.
机译:为了研究用于核废料处理的工程粘土屏障中的高密度不饱和粘土的水力力学行为,一些控制吸力的实验技术扩展到了高吸力范围。对于非常高的吸力(数百MPa),考虑通过施加给定的相对湿度进行控制的技术,并检查了来自文献的校准数据。根据使用氯化钠进行的校准,提出了一些校正值。将渗透技术扩展到更高的吸力,并获得了10 MPa的值,从而大大扩大了该方法的范围。提出了在受控吸力和零外加应力下,FoCa7粘土的保水和溶胀性能的研究。两种吸力控制方法之间观察到良好的连续性。在含水量和体积变化方面,观察到对抽吸循环的可逆反应。在这些变化期间,观察到风量保持恒定。可逆性与饱和微结构能级的主要作用有关,而饱和微结构能级主要受水和活性粘土矿物之间存在的物理化学键的影响。

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