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Physicochemical characterisation and flow properties of some bentonite muds

机译:一些膨润土泥的理化特性和流动性

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In civil engineering technologies, bentonites mixed with water are commonly used as bentonitic mud. The choice and the definition of criteria for mud selection are a difficult problem for industrials. This paper proposes a data set obtaining from the physicochemical and rheological investigation of 16 different commercial bentonites. Several analytical techniques are used to determine the mineralogical composition of those powders including X-ray diffraction, DTA and chemical analysis. Physical parameters such as particle size, specific surface area, swelling index, cationic exchangeable capacity and exchangeable bases are also studied. The viscosity of the mud is tested, thanks to the classic Marsh funnel viscometer and the rheological properties (yield stress, plastic viscosity and thixotropy) are measured by a high-resolution rheometer (Stresstech). Mineralogical data show that the bentonite appellation covers a very large variety of materials. Even if the main mineral is smectite, the global analysis of the powders shows that commercial bentonites contain secondary minerals, salts and sometimes polymers. Rheological data obtained for established flow allow to define two families of bentonite mud which difference seems to be due to industrial treatments. In fact, each bentonite develops its own behaviour depending on multicriteria. The results from this study show that it is necessary to characterize the mud from mineralogical and rheological points of view and to take into account, the nature of the excavated soils in order to choose the best bentonite.
机译:在土木工程技术中,通常将与水混合的膨润土用作膨润土。对于工业来说,泥浆选择标准的选择和定义是一个难题。本文提出了从16种商品膨润土的理化和流变学研究中获得的数据集。几种分析技术被用于确定那些粉末的矿物学组成,包括X射线衍射,DTA和化学分析。还研究了物理参数,例如粒度,比表面积,溶胀指数,阳离子可交换容量和可交换碱。得益于经典的Marsh漏斗粘度计,可以对泥浆的粘度进行测试,并通过高分辨率流变仪(Stresstech)测量流变性能(屈服应力,塑性粘度和触变性)。矿物学数据表明,膨润土名称涵盖了非常多种材料。即使主要矿物是蒙脱石,粉末的整体分析也表明,商业膨润土含有次要矿物,盐和聚合物。对于确定的流量获得的流变数据可以定义两个膨润土泥浆家族,这似乎是由于工业处理造成的。实际上,每种膨润土都会根据多种标准发展其自身的行为。这项研究的结果表明,有必要从矿物学和流变学的角度对泥浆进行表征,并考虑挖出的土壤的性质,以便选择最佳的膨润土。

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