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高校地质学报 ›› 2024, Vol. 30 ›› Issue (06): 678-693.DOI: 10.16108/j.issn1006-7493.2023062

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湘桂交界地区三江韧性剪切带的应变特征及其构造意义

官荣芳1,秦 亚1*,冯佐海1,苟小芳1,邢全力1,康志强1,胡乔帆1, 2,吴 杰1   

  1. 1. 桂林理工大学 广西有色隐伏金属矿产勘查与新材料开发协同创新中心;
    广西隐伏金属矿产勘查重点实验室,桂林 541006;
    2. 中国有色桂林矿产地质研究院有限公司,桂林 541006
  • 出版日期:2024-12-20 发布日期:2024-12-20

Strain Characteristics and Tectonic Significances of the Sanjiang Ductile Shear Zone in the Junction Area of Northern Guangxi and Western Hunan

GUAN Rongfang1,QIN Ya1*,FENG Zuohai1,GOU Xiaofang1,XING Quanli1,KANG Zhiqiang1,HU Qiaofan1,2,WU Jie1#br#   

  1. 1. Guilin University of Technology, Collaborative Innovation Center for Exploration of Nonferrous Metal Deposits and Efficient
    Utilization of Resources by the Province and Ministry; Guangxi Key Laboratory of Hidden Metallic
    Ore Exploration, Guilin 541006, China;
    2. China Nonferrous Metals (Guilin) Geology and Mining Co., Ltd., Guilin 541006, China
  • Online:2024-12-20 Published:2024-12-20

摘要: 论文通过宏—微观构造、磁组构和石英EBSD组构,讨论三江韧性剪切带的应变特征及其构造意义,约束扬子和华夏陆块的早古生代造山作用过程。三江韧性剪切带具有典型的宏—微观韧性变形组构,发育S-C组构、拉伸线理、A型褶皱、书斜构造、机械双晶、透入性片理、核幔构造和石英动态重结晶等。磁组构和宏—微观构造表明,三江韧性剪切带呈NNE向延伸超40 km,宽3.7~7.5 km。糜棱C面理倾向262°~321°,倾角31°~87°,极密点产状295°∠69°。磁化率各向异性度(P值)≥1.05的36组磁面理的极密点产状304°∠83°。磁面理相对于糜棱C面理发生顺时针方向的旋转,表明三江韧性剪切带具有左旋剪切性质。宏—微观构造表明,三江韧性剪切带既具左旋逆冲剪切,又具右旋正滑剪切的运动学性质。变形岩石既具压扁型应变,也具拉伸型应变;且呈现简单剪切为主,伴有纯剪切的剪切性质。石英EBSD组构表明,三江韧性剪切带具有晚期中低温变形(300~500 ℃)叠加于早期中高温变形(480~600 ℃)的特征。在宏—微观构造、石英EBSD组构和磁组构研究的基础上,结合区域地质资料,认为三江韧性剪切带形成于加里东期华夏陆块自SE向扬子陆块挤压受阻而产生反冲作用的构造背景。早期挤压碰撞阶段,产生压扁型应变和中高温左旋逆冲剪切;造山后伸展阶段,产生拉伸型应变和中低温右旋正滑剪切。上述认识揭示了三江韧性剪切带的应变特征、变形温度和动力学背景等,为深化认识华南早古生代构造事件提供了新的资料。

关键词: 磁组构, 石英EBSD组构, 应变特征, 韧性剪切带, 湘桂交界地区

Abstract:

The strain characteristics and tectonic significance of the Sanjiang ductile shear zone are studied by analyzing the macro-micro structures, magnetic fabrics and quartz EBSD fabrics to constrain the Early Paleozoic orogenic processes of the Yangtze and Cathaysia block. The Sanjiang ductile shear zone has typical macro-micro scopic ductile deformation fabrics, including S-C fabric, tensile lineation, A-type fold, domino structure, mechanical twin, permeable foliation, core-mantle  structure and quartz dynamic recrystallization. The magnetic fabrics and macro-micro structure show that the Sanjiang ductile shear zone extends more than 40 km in NNE direction with a width of 3.7-7.5 km. The mylonitic C-foliation strikes 262°-321° with the dip at 31°-87° and the overall average is 295 °∠ 69°. The mean of 36 groups of magnetic foliations with susceptibil ity anisotropy (Pvalue)≥1.05 is 304°∠ 83°. The clockwise rotation of the magnetic foliation relative to the C-plane foliation of mylonite indicates a sinistral sense of the Sanjiang ductile shear zone. Macro-micro structures show that the Sanjiang ductile shear zone is dominated by sinistral thrust shear and dextral normal slip shear. The rock strain of the Sanjiang ductile shear zone is mainly flattening and tensile strain. At the same time, it shows both pure shear and simple shear. Quartz EBSD fabric analysis reveals that the Sanjiang ductile shear zone is characterized by the late mid-low temperature deformation (300-500 ℃ ) superimposed on the early midhigh temperature deformation (480-600 ℃ ). Based on the research of macro-micro structures, magnetic fabrics and quartz EBSD fabrics, combined with regional geological data, it is considered that the Sanjiang ductile shear zone was formed in the tectonic background of compression and extrusion of the Cathaysia block from SE toward the Yangtze block. In the early extrusion and collision stage, the Sanjiang ductile shear zone underwent mid-high temperature sinistral thrust shear. After the late orogenic extension, the Sanjiang ductile shear zone experienced dextral normal slip shear at mid-low temperature. The above analysis reveals the strain characteristics, deformation temperature and dynamic background of the Sanjiang ductile shear zone and provides new constraints for better understanding of the Early Paleozoic tectonic events in South China.

Key words: magnetic fabric, quartz EBSD fabric, strain characteristic, ductile shear zone, western Hunan-northern Guangxi

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