巴西Colônia撞击坑高冲击压力下靶岩转化的岩石学研究

V. Velázquez, R. F. Lucena, J. M. A. Sobrinho, A. M. Sallun, W. S. Filho
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引用次数: 5

摘要

科洛尼亚陨石坑是在结晶基岩上形成的,它提供了一个很好的例子,说明了撞击过程中最独特的特征之一:冲击波对目标岩石的结构和矿物学变化的影响。含熔体的冲击岩主要来自火成岩和变质岩,包括花岗岩、云母片岩、花岗质片麻岩和石英岩。利用光学显微镜的研究表明,冲击波对这些岩性的影响导致了各种各样的变形特征和新材料的产生。最常见的特征包括流体织构、晶粒之间不寻常的重排模式、再结晶、新相的分解和析出、玻璃状和结晶小球的凝集,以及被动员的熔体形成不同类型的冲击熔体颗粒。这些转变过程可能包括以牺牲同一物种的母粒为代价生长出新的颗粒,或者从提供成分的颗粒中产生不同矿物类型的结晶,直到目标岩石的结构和成分发生完全变化。变形岩石中的小尺度结构对于探索弹塑性变形、相变和碰撞熔体产物的产生特别有趣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Petrographic Investigation of Target Rock Transformation under High Shock Pressures from the Colônia Impact Crater, Brazil
The Colonia impact crater, developed on crystalline basement rocks, offers an excellent example of one of the most unique features of the impact process: the effects of shock waves on textural and mineralogical changes of the target rock. The impact melt-bearing impactites were derived essentially from the igneous and metamorphic rocks, including granite, mica schist, granitic gneiss, and quartzite. Investigations using optical microscopy indicate that the effect of shock waves on those lithologies caused a wide variety of deformation features and generation of new materials. The most common features include fluidal textures, unusual rearrangement patterns between grains, recrystallization, decomposition and precipitation of new phases, agglutination of glassy and crystalline spherules, and the mobilized melt formed different types of impact melt particles. These transformations cover processes that may involve a new grain growing at the expense of parental grains of the same species, or crystallization of different mineral types from component-providing grains until a complete textural and compositional change of the target rocks occurs. Small-scale structures in deformed rocks are particularly interesting for exploring elastic-plastic deformation, phase transformations, and generation of impact melt products.
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