中英
cristobalite
/ krɪsˈtəʊbəˌlaɪt /
/ krɪsˈtoʊbəlaɪt /
  • 简明
  • 柯林斯
  • n.方石英;方晶石
  • 网络释义
  • 专业释义
  • 英英释义
  • 1

     方石英

    中国最大的综合性文献数据库 -维普资讯 关键词: 膨润土 方石英 赋存状态 分散 离心[gap=1826]Key words: bentonite; cristobalite; occurrence; disperse; centrifuge

  • 2

    [矿物] 白硅石

    ... 二氧化硅;白碳黑;白炭黑;水合硅酸;轻质二氧化硅;Silicon dioxide 二氧化硅;方英石;白硅石;砂;方石英;白炭黑;微细硅酸;Cristobalite;silica,…… 石英砂;quartz sand ...

  • 3

     方硅石

    ... 十字交叉层理 crisscross-bedding 方硅石 cristobalite 准则 criterion ...

短语
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  • 双语例句
  • 1
    Silicosis is seen in horses associated with inhalation of dust from certain cristobalite-containing soils in California.
    矽肺病是在马吸入灰尘从某些含方石英,在加利福尼亚州的土壤。
  • 2
    The results reveal that the increase of the sintering temperature and the hot-pressing pressure can promote the formation of cristobalite in the fibrous composites.
    结果表明热压烧结温度和压力对复合材料中方石英的析出有着显著的促进作用;
  • 3
    The notes describe the common minerals such as quartz and its polymorphs, coesite, tridymite and cristobalite, feldspar, plagioclase, feldspathoids, pyroxenes, amphiboles, etc.
    讲稿详细地介绍了火成岩矿物,如:石英及它的同构异形体、柯石英、鳞石英、方石英、长石、斜长石、似长石、辉石、闪石等矿物。
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  • 百科
  • Cristobalite

    The mineral cristobalite is a high-temperature polymorph of silica, meaning that it has the same chemical formula, SiO2, but a distinct crystal structure. Both quartz and cristobalite are polymorphs with all the members of the quartz group, which also include coesite, tridymite and stishovite. Cristobalite occurs as white octahedra or spherulites in acidic volcanic rocks and in converted diatomaceous deposits in the Monterey Formation of the US state of California and similar areas. Cristobalite is stable only above 1470 °C, but can crystallize and persist metastably at lower temperatures.The persistence of cristobalite outside of its thermodynamic stability range occurs because the transition from cristobalite to quartz or tridymite is "reconstructive", requiring the breaking up and reforming of the silica framework. These frameworks are composed of SiO4 tetrahedra in which every oxygen atom is shared with a neighbouring tetrahedron, so that the chemical formula of silica is SiO2. The breaking of these bonds required to convert cristobalite to tridymite and quartz requires considerable activation energy and may not happen on a human time frame. Framework silicates are also known as tectosilicates.There is more than one form of the cristobalite framework. At high temperatures, the structure is cubic, Fd3m, No.227, Pearson symbol cF104. A tetragonal form of cristobalite (P41212, No. 92, Pearson symbol tP12) occurs on cooling below ca. 250 °C at ambient pressure, and is related to the cubic form by a static tilting of the silica tetrahedra in the framework. This transition is variously called the low-high or transition. It may be termed "displacive"; i.e., it is not generally possible to prevent the cubic β-form from becoming tetragonal by rapid cooling. Under rare circumstances the cubic form may be preserved if the crystal grain is pinned in a matrix that does not allow for the considerable spontaneous strain that is involved in the transition, which causes a change in shape of the crystal. This transition is highly discontinuous. The exact transition temperature depends on the crystallinity of the cristobalite sample, which itself depends on factors such as how long it has been annealed at a particular temperature.The cubic β-phase consists of dynamically disordered silica tetrahedra. The tetrahedra remain fairly regular and are displaced from their ideal static orientations due to the action of a class of low-frequency phonons called rigid unit modes. It is the "freezing" of one of these rigid unit modes that is the soft mode for the α–β transition.In the α–β phase transition only one of the three degenerate cubic crystallographic axes retains a fourfold rotational axis in the tetragonal form. The choice of axis is arbitrary, so that various twins can form within the same grain. These different twin orientations coupled with the discontinuous nature of the transition can cause considerable mechanical damage to materials in which cristobalite is present and that pass repeatedly through the transition temperature, such as refractory bricks.When devitrifying silica, cristobalite is usually the first phase to form, even when well outside of its thermodynamic stability range. The dynamically disordered nature of the β-phase is partly responsible for the low enthalpy of fusion of silica.The micrometre-scale spheres that make up precious opal are made of cristobalite, crystallized metastably at low temperature.An idealized model of β-cristobalite, showing corner-bonded SiO4 tetrahedra. In reality the tetrahedra are constantly tumbling.β-cristobalite viewed along another direction.The crumpled framework of α-cristobalite, related to the β-form by static tilting of the tetrahedra.Unit cell of α-cristobalite; red spheres are oxygen atoms.

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