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Influence of petrographic characteristics on physico-mechanical properties of ultrabasic rocks from central Greece

机译:岩石学特征对希腊中部超基性岩石物理力学性质的影响

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摘要

Ultrabasic rocks show a variety of engineering properties that may affect quarrying operations, tunnelling, mining, slope stability and the use of rock as a construction material. The physico-mechanical properties are influenced by the mineralogical and textural characteristics as well as the weathering of the rock. For this reason, the relationships between petrographic and physico-mechanical properties of fresh (peridotites) and serpentinized (serpentinites) ultrabasic rocks from central Greece, were investigated using correlation analysis. Thin sections, from the 47 samples, were prepared and examined under the polarizing microscope with the aim of describing the main mineralogical composition, the grain size, the serpentini-zation percentage and the structure of the rocks. The mineralogical and textural characteristics of some of them were also studied by X-ray diffraction analyses and the scanning electron microscope. The 47 samples were tested to determine dry and saturated unit weight, effective porosity, uniaxial compressive strength and static modulus of elasticity. The relationships between these properties and the petrographic characteristics are described by simple regression analyses. The research demonstrates that the physico-mechanical characteristics are strongly influenced by the petrographic characteristics except for mineral grain size. Negative linear correlations exist between serpenti-nization percentage and dry unit weight, while the effective porosity has a strong positive relationship with degree of serpentinization. Positive relationships are also obtained between the mechanical properties and dry unit weight and micropetrographic index I_(ps), while the increase of effective porosity causes a decrease in the index I_(ps) (logarithmically in peridotites, and exponentially in serpentinites). The mechanical properties are exponentially related (negatively) to the serpentinization percentage in serpentinites and logarithmically (negatively) in peridotites. The serpentine plays a very important role in strength and elasticity modulus reduction, while the primary minerals have a smaller effect on the mechanical properties.
机译:超基性岩石具有多种工程性质,可能会影响采石作业,隧道掘进,采矿,边坡稳定性以及将岩石用作建筑材料。物理力学性能受矿物学和质地特征以及岩石的风化影响。因此,使用相关分析研究了来自希腊中部的新鲜(橄榄岩)和蛇纹岩化(蛇纹岩)超基性岩石的岩石学和物理力学性质之间的关系。准备了来自47个样品的薄片,并在偏光显微镜下进行了检查,目的是描述主要的矿物学组成,晶粒大小,蛇纹石化百分比和岩石结构。还通过X射线衍射分析和扫描电子显微镜研究了其中一些的矿物学和组织学特征。测试了47个样品,以确定干重和饱和单位重量,有效孔隙率,单轴抗压强度和静态弹性模量。通过简单的回归分析来描述这些性质与岩石学特征之间的关系。研究表明,除了矿物晶粒尺寸外,岩石力学特征对物理力学特征的影响很大。蛇纹化率与干燥单位重量之间存在负线性关系,而有效孔隙度与蛇纹化程度具有很强的正相关关系。力学性能与干重和微岩性指数I_(ps)之间也呈正相关关系,而有效孔隙率的增加导致指数I_(ps)降低(在橄榄岩中呈对数关系,在蛇纹岩中呈指数关系)。在蛇纹石中,机械性能与蛇纹石化百分比呈指数关系(负),在橄榄岩中,其机械特性与对数呈指数关系(负)。蛇纹石在降低强度和弹性模量方面起着非常重要的作用,而主要矿物对机械性能的影响较小。

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  • 作者单位

    Laboratory of Mineralogy-Geology, Division of Geological Science and Atmospheric Environment, Department of Sciences, Agricultural University of Athens, 75 Iera odos Street, 11855 Athens, Greece;

    Laboratory of Mineralogy-Geology, Division of Geological Science and Atmospheric Environment, Department of Sciences, Agricultural University of Athens, 75 Iera odos Street, 11855 Athens, Greece;

    Laboratory of Mineralogy-Geology, Division of Geological Science and Atmospheric Environment, Department of Sciences, Agricultural University of Athens, 75 Iera odos Street, 11855 Athens, Greece;

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  • 正文语种 eng
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  • 关键词

    Ultrabasic rocks; Quantitative petrography; Physico-mechanical properties; Correlations;

    机译:超基性岩石;定量岩相学物理力学性能;相关性;

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