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Microstructure characteristic and mechanical behavior of mudstone under water environment

机译:水环境下泥岩的微观结构特征与力学行为

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Under water environment, the mudstone has poor properties, such as hydrophilicity, expansibil-ity and disintegration, which are of great challenges in the supporting design and excavation of underground openings. This paper aims at the study of waterweakening mechanism of the mudstone by several experimental methods. (1) Powder X-ray diffraction was conducted to obtain the mineral composition. (2) The uniaxial com-pression of mudstones in five conditions with water contents respectively nearly 0 (dry state), 1.04%, 1.32%, 1.75%, 1.88% (saturated state) were discussed. (3) The changes of microstructure in different water contents were studied by scanning electron microscope. The results show that the mudstone mainly contains chlorite, quartz, illite and calcite with the contents about 25%, 20%, 25%, 17% respectively, mixed up with small amount of feldspar, dolomite and hematite account for 5%, 5%, 3% respectively. With the increase of water contents, the water film between mineral particles becomes thicker and the mudstone starts to expand which lead to the uneven inner-stress. Meanwhile, part of colloidal substance is dissolved and the joints become loose. All of these lead to form a lot of micro-pores that damage the internal structure system. As a result, the peak strength and the mechanical parameters gradually decline with water contents increase until to a stable state.
机译:在水环境下,泥岩具有差的性质,如亲水性,扩张 - ITY和崩解,这在支撑设计和挖掘的地下开口方面存在巨大挑战。本文旨在通过几种实验方法研究泥岩的水臭棚机制。 (1)进行粉末X射线衍射以获得矿物组合物。 (2)讨论了含水量分别近0(干燥状态)的五种条件下的泥岩中的单轴组合,讨论了1.04%,1.32%,1.88%(饱和状态)。 (3)通过扫描电子显微镜研究了不同水分中微观结构的变化。结果表明,泥岩主要含有亚氯酸盐,石英,伊利铁矿和方解石,其内容约为25%,20%,25%,17%,混合少量的长石,白云石和赤铁矿占5%,5% ,3%。随着水含量的增加,矿物颗粒之间的水膜变厚,泥岩开始扩张,导致内部应力不均匀。同时,部分胶体物质溶解,关节变松。所有这些都导致形成大量损坏内部结构系统的微孔。结果,峰强度和机械参数随着水含量的增加逐渐下降,直到稳定状态。

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