石英闪长岩建筑石材随蚀变的物理力学性质

Q4 Earth and Planetary Sciences
M. Torkan, M. R. Irannezhadi, A. Baghbanan
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引用次数: 2

摘要

火成岩建筑石材的微观和地质力学性质包括蚀变程度、微裂缝的存在、峰值强度、孔隙度、有害矿物的比例等。据报道,孔隙度对火成岩的峰值强度有毁灭性的影响。本文选取了来自伊朗纳坦兹5个采石场的石英闪长岩样品,进行了显微和地质力学研究。从薄片上确定了蚀变水平和对样品强度有害的矿物。因此,按照ISRM标准进行了密度、孔隙度、耐久性指标、巴西试验和三轴试验等岩土力学试验。微观研究结果表明,蚀变对岩石峰值强度的影响比对孔隙度的影响更大。将结果与标准值进行比较,并检测到强度和微观特性之间的定性相关性,强调了建筑石材微观研究的重要性。因此,在建筑石材的勘探、开采和加工过程中,可以采用这种相关性,以避免巨额支出和对环境的破坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alteration dependent physical-mechanical properties of quartz-diorite building stones
The microscopic and geomechanical properties of igneous building stones include the level of alteration, presence of micro cracks, peak strength, porosity, proportion of detrimental minerals, etc. Porosity is reportedly of a devastating impact on the peak strength of igneous rocks. The quartz diorite rock samples in this study were selected from five quarries in Natanz, Iran and subject to microscopic and geomechanical investigations. The level of alteration and the minerals detrimental to the strength of the samples were identified from thin sections. Therefore, the geomechanical tests upon density, porosity, durability index, the Brazilian, and triaxial tests were conducted as per ISRM standards. The findings from microscopic studies reveal that alteration is of more intense impact on rock peak strength compared to that of porosity. The results were compared to standard values and a qualitative correlation between strength and microscopic properties was detected accentuating the importance of microscopic studies on construction stones. The correlation thereupon may be adopted in the exploration, exploitation, and process of construction stones to avoid heavy expenditures and damage to the environment.
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来源期刊
International Journal of Mining and Geo-Engineering
International Journal of Mining and Geo-Engineering Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
0.80
自引率
0.00%
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0
审稿时长
12 weeks
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