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深层次构造岩中矿物多晶条带的塑性流动及对大陆岩石圈的构造意义

PLASTIC FLOW OF MINERAL-POLYCRYSTAL STRIPS IN THE DEEP- LEVEL TECTONITES AND ITS TECTONIC SIGNIFICANCE ON CONTINENTAL LITHOSPHERE

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【作者】 张希道翟明国宋明春李洪奎刘朋瑞张华锋

【Author】 ZHANG Xi dao 1, ZHAO Ming guo 2, SONG Ming chun 1, LI Hong kui 1, LIU Peng rui 3, ZHANG Hua feng 4 1.Shandong Geological Survey Institute, Weifang 261021,China; 2.Institute of Geology and Geophysics, Academia Sinica, Beijing 1

【机构】 山东省地质调查研究院中国科学院地质与地球物理研究所山东省地质科学实验研究院北京大学地质学系 山东潍坊261021北京100029山东潍坊261021山东济南250013北京100871

【摘要】 通过深层次构造岩中不同粒度矿物多晶条带塑性流动的比较和形成机理的探讨 ,得出矿物多晶条带的流度规律 :在深层次构造岩中热加工状态下生成的数种矿物多晶条带共生时 ,其晶粒较小者塑性流动的流度较大。结合单矿物多晶条带的粒度规律得出 :在深层次构造岩中由动态重结晶所生成的数种单矿物多晶条带共生时 ,其中脆韧性转化点温度较高的矿物 ,其多晶条带的塑性流动的流度较大。根据温压条件由低至高矿物的脆韧性转化序列和岩石圈大陆部分各圈层的主要组成矿物 ,可知岩石圈大陆部分各圈层的塑性流动具有协调性。

【Abstract】 The fluidity law of mineral polycrystal strips is obtained by comparison of plastic flow of various size of grains in the deep level tectonite and by discussion of the formation mechanisms.When several kinds of mineral polycrystal strips formed under hot working state are paragenetic in deep level tectonite, the smaller the grain size in a mineral polycrystal stripis, the larger the fluidity of plastic flow of the strip.The above law and the grain size law of monomineralic polycrystal strips in deep level tectonite indicate that,when several kinds of monomineralic polycrystal strips formed by dynamic recrystallization are paragenetic, the higher the brittle ductile transformation temperature of a mineralis, the larger the fluidity of plastic flow of the mineral polycrystal strips.Based on the brittle ductile transformation sequence of the main rock forming minerals which is compatible with the low to high variation of pressure temperature conditions and on the main constitutive minerals of the different layers of lithospheric continent from the top to bottom,it is considered that the plastic flow of the different layers of lithospheric continent is characterized by internal coordination.

【基金】 国土资源大调查 1∶ 2 5× 10 4日照等幅区域地质调查基金项目 ( 2 0 0 0 130 0 0 0 5 131号 ) ;国家自然科学基金项目 (批准号 :49872 0 6 4号 )
  • 【文献出处】 矿物岩石 ,Journal of Mineralogy and Petrology , 编辑部邮箱 ,2002年01期
  • 【分类号】P313
  • 【被引频次】1
  • 【下载频次】117
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