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1.
花岗岩体是很多重要工程地基或围岩的首选。选取高放废物地质处置阿拉善预选区巴彦诺日公花岗岩样品,开展薄片鉴定,获得各花岗岩样品的矿物含量和粒径;通过单轴压缩试验,获得花岗岩的单轴抗压强度。通过对比各组样品矿物含量和粒径与单轴抗压强度,研究二者之间的关系。结果表明:对花岗岩单轴抗压强度影响最大的矿物是钾长石和黑云母,斜长石和石英的影响不明显;矿物粒径与单轴抗压强度的相关性不明显,但与某一结构岩石单轴抗压强度的相关性明显;花岗岩的强度不仅仅取决于组成矿物含量和粒径,对于其内部结构的细节(如微裂隙、矿物排列、胶结等)非常敏感。  相似文献   

2.
The relationship between uniaxial compressive strength and degradation was investigated for selected rock types, by using regression analyses to determine whether degradation was a useful predictor of compressive strength. In addition, the effects of aggregate particle size, number of hammer blows during the degradation test, engineering index properties, petrographic characteristics, and water saturation on the compressive strength-degradation relationship were evaluated. The results show that strong inverse relationships exist between compressive strength and degradation (measured on a 9.5-4.75-mm size aggregate) for sandstones and igneous/metamorphic rocks, but that no significant relationship exists for limestones/dolomites. The results also indicate a strong positive correlation between degradation and L.A. abrasion loss and can be used to establish a limit of allowable degradation for practical applications. Engineering index properties do not significantly affect the relationship between compressive strength and degradation but petrographic characteristics are important in explaining the strength and degradation behavior of the rocks studied. Water saturation decreases compressive strength and increases degradation to varying degrees.  相似文献   

3.
Granitic rocks show a variety of engineering properties that may affect quarrying operations, tunneling, mining, slope stability and the use of rock as a construction material. The physical and mechanical properties are a function of the mineralogical and textural characteristics of the rock. The purpose of this study is to apply correlation analysis to investigate the relationships between petrographical and engineering properties of granitic rocks. A variety of granitic rock samples from different parts of Turkey were subjected to petrographic studies. The same samples were then tested to determine specific gravity, dry and saturated unit weight, water absorption, effective and total porosity, sonic velocity, Schmidt hardness, point load strength index, uniaxial compressive strength, tensile strength and modulus of elasticity. The relationships between these properties and the petrographical characteristics are described by simple regression analyses. The study revealed that the influence of the textural characteristics on the engineering properties appears to be more important than the mineralogy. It also determined that the types of contacts, grain (mineral) shape and size significantly influence the engineering properties of the granitic rocks.  相似文献   

4.
Being the inherent attributes of rock, the petrographic characteristics such as mineral composition and microstructure are the constructive parameters which influence its bursting potential. In the laboratory, rock specimens with different petrographic characteristics are tested to study their rock strength and failure duration, and correspondingly, composition and microstructure of each rock specimen are analyzed in thin sections to determine the mineral composition, content, grain size, cement and contact modes between grains. The results show that the petrographic characteristics of clastic rock have an intrinsic influence on its strength and failure duration. With the increase of the rock detritus content (or quartz), the uniaxial compressive strength increases according to a logarithmic expression and the failure duration decreases according to a negative logarithmic expression. With increasing average size of detritus grains in rock, the stiffness and brittleness of rock strengthens. The uniaxial compressive strength of rock has a logarithmic variation with its average size of detritus grains and the failure duration decreases with its increasing average size of detritus grains according to a negative logarithmic expression.  相似文献   

5.
To study the relationship between engineering properties and petrographic characteristics, 20 rock samples were collected from Jurassic sandstones in the Hamedan region, western Iran. The specimens were tested to determine uniaxial compressive strength, point load strength index, tangent modulus, porosity, and dry and saturated unit weights. Samples were also subjected to petrographic examination, which included the observation of 11 parameters and modal analysis. Based on the results of a statistical analysis, polynomial prediction equations were developed to estimate physical and mechanical properties from petrographic characteristics. The results show that textural characteristics are more important than mineral compositions for predicting engineering characteristics. The packing density, packing proximity and grain shape are the petrographic properties that significantly affect the engineering properties of samples. Multivariate linear regression analysis was performed, employing four steps comprising various combinations of petrographic characteristics for each engineering parameter. The optimal equation, along with the relevant combination of petrographic characteristics for estimating the engineering properties of the rock samples is proposed.  相似文献   

6.
梁磊 《矿产与地质》1996,10(3):198-200
花岗岩岩石中矿物的成分、结构、构造类型和矿物力学性质是制约岩石可锯性的主要因素。花岗岩岩石中石英矿物多(岩石偏酸性)、颗粒结晶粗大,矿物裂理和解理发育差,岩石呈致密块状构造,则可锯性差,反之则可锯性好。并以四川红系列花岗岩石材加工为例,说明了花岗岩岩相学特征对岩石可锯性影响的程度。从而,为花岗岩石材开发过程中,如何选择金刚石锯片提供科学参考资料  相似文献   

7.
The topaz-albite granites of the Limu district are ultra-acidic, peraluminous, Li-F-Na-rich and Sn-Ta-Nb-mineralized. A distinct vertical zonation is developed in the granite stocks. There is an upward, systematic transition from leucocratic microcline-albite granite, through albite-microcline granite, topaz-albite granite, pegmatite stockscheider and layered pegmatite-aplite dikes, to K-feldspar-quartz veins and lepidolite-fluorite stringers in the country rocks. Snow-ball textures, homogeneous distribution of rock-forming and accessory minerals, disseminated mineralization, and melt inclusions in quartz, topaz, and albite are typical features indicative of their crystallization from the late stage Li-F-Na-rich and Sn-Ta-Nb-bearing residual granitic melts at a higher intrusion level. A comparison with rare-metal-bearing pegmatite, ongonite, topaz rhyolite and obsidian glass from other regions shows the worldwide existence of these specialized residual melts. Their emplacement and crystallization in a variety of geological environments result in the formation of a series of chemically similar rocks with different petrographic textures and mineral associations. The topaz-albite granites and associated mineralization in the Limu district provide a good example of highly evolved magmatic fractionation in the F-rich granite system and fluid/melt partitioning behavior of rare-metal elements during magmatic-hydrothermal evolution.  相似文献   

8.
The paper presents detailed geochemical data on the rocks of the Zashikhinsky Massif and mineralogical–geochemical characteristics of the ores of the eponymous deposit. The rare-metal granites are divided into three facies varieties on the basis of the degree of differentiation and ore potential: early facies represented by microcline–albite granites with arfvedsonite, middle facies represented by leucocratic albite–microcline granites, and late (most ore-bearing) facies represented by quartz–albite granites grading into albitites. Microprobe data were obtained on major minerals accumulating trace elements in the rocks and ores. All facies of the rare-metal granites, including the rocks of the fluorite–rare-metal vein, define single compositional trends in the plots of paired correlations of rock-forming and trace elements. In addition, they also show similar REE patterns and spidergrams. The latter, however, differ in the depth of anomalies of some elements. Obtained geological, petrographic, and geochemical data suggest a magmatic genesis of the rocks of different composition and their derivation from a single magma during its differentiation. On the basis of all characteristics, the Zashikhinskoe deposit is estimated as one of the largest tantalum rare-metal deposits of alkaline-granite type in Russia.  相似文献   

9.
颗粒配比对岩石力学特征影响的数值模拟研究   总被引:1,自引:1,他引:0  
岩石是矿物颗粒的集合体同时也是一种重要的非均质材料,了解它的力学特征对岩土工程及矿产开采都具有重要的指导作用。作为典型的颗粒材料,颗粒单元体的粒径分布配比必然影响着岩石的宏观力学表现。通过设置不同体积配比下的颗粒材料单元体,利用PCF2D软件模拟了相同颗粒材料单元体不同配比下岩石模型的力学特征。模拟结果表明颗粒单元体配比对岩石的力学特征有明显的影响。在模拟过程中大颗粒的配比显著影响着岩石的抗压强度,大颗粒含量相对越高,抗压强度越大。而细颗粒的配比影响着岩石的抗拉强度,细颗粒含量相对越高,抗拉强度越大,但是过多的细颗粒会降低岩石的抗拉强度。考虑岩石压缩过程中裂缝形态的影响。结果表明均匀分布、5:2:3、7:2:1的颗粒配比形成了贯穿裂缝,而1:2:7和3:2:5的颗粒配比未能形成贯穿裂缝,且细颗粒配比越高,裂缝数目出现高值的概率也越大。   相似文献   

10.
浙东白垩纪北漳和梁弄花岗岩体及其暗色岩石包体研究   总被引:7,自引:0,他引:7  
浙东地区晚中生代花岗岩类在岩性上分为三类:花岗岩-二长花岗岩、钾长花岗岩和A型花岗岩。对后两类花岗岩已有较多研究,但对前一类,尤其是二长花岗岩的研究还较薄弱。选择浙东具代表性的北漳和梁弄二长花岗岩体及其所含暗色岩石包体,以及共生的石英闪长岩类,通过系统的岩石学与地球化学对比研究,提出浙东二长花岗岩属准铝质、高钾钙碱性Ⅰ型花岗岩类演化系列,暗色岩石包体是由花岗质岩浆在深部析离出的镁铁质微粒包体(MME),成分特征类似于石英闪长岩,说明三者具内在成因联系,均与俯冲作用关系密切。  相似文献   

11.
Abundant Cambrian granitic rocks in Princess Elizabeth Land and adjacent regions of Antarctica occupy various positions (from syn- to postkinematic) in the structure of the crust. Their mineral and isotopic composition reflects both the character and age of the parental substrate and geodynamic formation conditions of the region. The study of Cambrian processes is important for this region, because almost all known models of the formation of the Gondwana supercontinent suggest the Neoproterozoic–Cambrian amalgamation of two or three continental blocks, parts of which can be distinguished in this sector. The paper presents geological data on granitic rocks, as well as their mineral and Nd isotopic composition. Field observations and analytical data indicate a different structure and petrographic composition of Cambrian granitic rocks in Princess Elizabeth Land, which are related to their different formation conditions. Synkinematic biotite or garnet–biotite peraluminous S-type granites mostly occur in the eastern Princess Elizabeth Land. Mostly late and postkinematic biotite and amphibole–biotite (±orthopyroxene) granites or granodiorites are typical of its western part. Their compositions are similar to that of A-type granites. In comparison with coeval granites in adjacent areas, the character of Cambrian granites in Princess Elizabeth Land substantiates the presence of structural zones identified from geological data and indicates the presence of a Cambrian orogen probably with a collisional nature, as well as the location of its hinterland in intracontinental Antarctica.  相似文献   

12.
矿物成分和细观结构与岩石材料力学性质的关系   总被引:1,自引:0,他引:1  
岩石材料的宏观力学性质取决于其矿物成分和细观结构。使用材料试验机,测定了岩浆岩、化学沉积岩以及碎屑沉积岩9种岩样的力学性质参数。采用X射线衍射方法,测定了相应岩样的矿物成分。使用扫描电镜,观测了相应岩样的细观结构。分析了矿物成分和细观结构分别与力学性质参数的定性关系。对各组岩样的研究分析表明:存在于颗粒边界的裂隙会显著降低岩样的抗拉强度,长石矿物是岩样脆性的主要来源,颗粒大小和面理结构会对岩石的内摩擦角造成显著的影响,细晶花岗岩中较高的方解石含量使其抗压强度和弹性模量较小,细晶花岗岩中石英含量较高,其粘聚力较大;石盐晶体的细小与紧密堆积,造成了相应岩样的膨胀或蠕变特性,有机质的存在会对岩盐的力学性能产生显著的弱化;岩样中颗粒间的弱带,会弱化岩石材料的力学性能。深灰色泥岩中石英胶结物的次生加大现象,使得深灰色泥岩的力学性能得到提高。   相似文献   

13.
研究Cu2+污染物对桂林红黏土土性异变的影响。通过开展XRD、XRF及压汞试验,探讨Cu2+污染红黏土中主要矿物成分的异变规律及微观孔隙结构的变化趋势,结果表明:红黏土中主要矿物成分为高岭石、石英和针铁矿,Cu2+污染对这3种主要矿物成分的含量产生显著影响,随着Cu2+浓度的增大,高岭石和针铁矿的含量逐渐减少,石英的含量逐渐增多,其含量变化率大小关系为:高岭石>针铁矿>石英,且在浓度为2%时,高岭石的损失率高达10.69%,针铁矿的损失率达到5.38%;红黏土孔隙分布曲线为双峰分布,双峰分别分布在0.01-0.1 μm和1~10 μm之间,且在0.01~0.1 μm之间的微小孔隙占了绝对优势。随着Cu2+浓度的增加,"双峰"逐渐右移,孔隙变大;"峰宽"逐渐变宽,孔隙变多。通过开展相关力学试验,观察Cu2+污染红黏土的变形强度特性异变规律,试验结果表明:Cu2+污染对红黏土的变形强度特性影响显著。随着Cu2+浓度的增加,土体的无侧限抗压强度、抗剪强度、黏聚力C和内摩擦角φ逐渐减小,初始孔隙比e0和压缩系数α逐渐增大;当Cu2+浓度从0增大至2%时,土体应力-应变关系曲线由典型的应变软化型转变为弱应变硬化型,无侧限抗压峰值强度减少了76.91%,抗剪强度平均损失率达到69.36%。  相似文献   

14.
It is important to understand the effect of freeze–thaw cycles on the mechanical properties of rocks. In this paper, the variation of the uniaxial compressive strength, peak strain, elastic modulus and stress–strain curves of granite subjected to freeze–thaw cycles with different heating temperatures were studied experimentally and the relationships were derived. As the number of freeze–thaw cycles increases, the compressive strength and elastic modulus decrease, while the peak strain decreases. In addition, an increased temperature increases the peak strain while decreasing the compressive strength and elastic modulus. An expression for the initial damage for the adopted rock material due to freeze–thaw cycling was proposed based on the Loland model. The current research has established a solid foundation for further experimental studies on the fatigue behavior of granite after freeze–thaw cycling.  相似文献   

15.
Geological investigation in recent years reveals that the anorthosite-leuconorite massif (81 sq km) is much larger than known from previous studies. The massif is bordered by a suite of garnetiferous felsic rocks comprising quartz monzonite gneiss, granite gneiss and megacrystic K-feldspar-bearing granite. Ferrodiorites, hitherto unknown from this area, occur as veins at the massif-felsic suite interface, and as rare apophyses within leuconorites at the massif margin. The massif and the bordering felsic rocks were presumably emplaced during the earliest of the three phases of folding documented by the metasedimentary gneisses that host the massif. The petrographic and geochemical characteristics suggest that the low-K anorthosite-leuconoriteferrodiorite suite does not share a common parentage with the bordering high-K felsic intrusives. The anorthosites and leuconorites were derived by polybaric fractionation of mantle-derived melts. The ferrodiorites are anorthosite residual melts that were not entirely segregated from the host solids. By contrast, the granite gneisses and granites originated by incongruent melting of crustal rocks. The chemical differences between quartz monzonite and granite gneisses point to their derivation from different crustal precursors.  相似文献   

16.
小兴安岭晚石炭世花岗岩具有明显的岩浆混合特征。岩体中暗色岩浆包体发育,主要为细粒闪长质岩浆包体,包体形态多样、大小不一,与寄主岩石呈截然、模糊或过渡关系。包体的矿物组合明显不平衡,如出现了寄主岩石中的碱性长石捕虏晶,有时可见其具暗色矿物镶边,发育针状磷灰石。这表明小兴安岭晚石炭世花岗岩的岩浆混合表现为基性岩浆和酸性岩浆的混合。这为探讨这些花岗岩的成因提供了岩石学依据,同时也暗示晚古生代佳木斯—松嫩古陆可能发生过地壳的垂向生长。  相似文献   

17.
黄星  李东庆  明锋  邴慧  彭万巍 《冰川冻土》2016,38(5):1346-1352
在寒区工程建筑物设计中,冻土的抗压、抗拉强度是两个重要的力学指标.在负温条件下,对粉质黏土、黄土和砂土进行单轴抗压和劈裂抗拉试验,研究冻土破坏时的破坏形态、破坏机理、应力-应变曲线和拉应力与径向位移关系曲线的形式,分析单轴抗压强度和劈裂抗拉强度的差异以及这两种强度随土质特性和温度的变化规律.试验结果表明:单轴载荷作用下试样破坏后呈鼓状,且表现为应变软化型塑性破坏特征;劈裂作用下产生沿直径向试样两侧延伸的裂缝,不同土质破坏后裂缝扩展的宽度和深度不同;冻土的抗压强度与抗拉强度均与负温存在很好的线性相关性,随温度的降低而增大;在相同温度条件下,冻土的抗压强度大于其抗拉强度;对于同一种冻土,其抗压强度的温度效应比抗拉强度的温度效应显著.本试验分析结果可为寒区工程的实际应用提供参考.  相似文献   

18.
镁铁质微粒包体在南岭中段中、晚侏罗世花岗岩中分布十分普遍,其分布规律是,岩体内同阶段较早次形成的岩石单元含量高,较晚次单元中含量少甚至无;与钨、锡、钼、铋等多金属矿有关的花岗岩体中微粒包体的含量高且个体大,而与矿化无关的岩体中含量少、个体小。对包体的颜色、形态、结构、成分、岩性等方面的综合研究表明,包体为岩浆成因。包体中出现明显的不平衡矿物组舍和结构,发育针状磷灰石晶体,出现嵌晶状石英和碱性长石,显示出岩浆混合的岩相学特征,表明该区中、晚侏罗世花岗岩的成因为壳一幔岩浆混合而成的。研究还表明,区内岩浆混合作用的强弱、基性物质加入的多少都与锡成矿作用的好坏有直接关系。  相似文献   

19.
Precambrian granites of the Sharm El-Sheikh area in south Sinai, Egypt belong to collisional and post-collisional Magmatism (610–580 Ma). The granites are widely distributed in the northern part of the Neoproterozoic Arabian-Nubian Shield. South Sinai includes important components of successive multiple stages of upper crust granitic rocks. The earliest stages include monzogranite and syenogranites while the later stages produced alkali feldspar granites and riebeckite-bearing granites. Numerous felsic, mafic dikes and quartz veins traverse the study granites. Petrographically, the granitic rocks consist mainly of perthite, plagioclase, quartz, biotite and riebeckite. Analysis results portray monzogranites displaying calc-alkaline characteristics and emplaced in island-arc tectonic settings, whereas the syenogranites, alkali-feldspar granites and the riebeckite bearing-granites exhibit an alkaline nature and are enriched in HFSEs similar to granites within an extensional regime. Multi-element variation diagrams and geochemical characteristics reinforce a post-collision tectonic setting. REEs geochemical modeling reveals that the rocks were generated as a result of partial melting and fractionation of lower crust basaltic magma giving rise to A1 and A2 subtype granites. They were subsequently emplaced within an intraplate environment at the end of the Pan-African Orogeny.  相似文献   

20.
黑龙江太平岭早侏罗世花岗岩成因及壳幔混合作用   总被引:2,自引:0,他引:2  
位于黑龙江省牡丹江一带的太平岭是兴蒙造山带的重要组成部分,在该区广泛分布大量花岗岩。这些花岗岩的SHRIMP锆石U-Pb年龄介于179~204 Ma之间,表明形成于早侏罗世,而非以往认为的晚三叠世。岩体的岩性以花岗闪长岩为主,其中普遍含有细粒闪长质包体,而二长花岗岩-正长花岗岩中偶见细粒闪长质包体。岩石学、岩相学和地球化学研究表明这些花岗岩为壳幔岩浆混合成因。太平岭早侏罗世花岗岩具有比较均一的Sr、Nd、Pb同位素成分,εNd(t)值介于-3.2~+2.3之间,(87Sr/86Sr)i值主要集中在0.704~0.706之间,进一步表明岩石的源区与幔源物质有密切的联系。花岗岩显示火山弧花岗岩的特点,代表了以挤压为主的构造环境,表明岩石可能与古太平洋板块俯冲作用有关。  相似文献   

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