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首页> 外文期刊>International Geology Review >~(40)Ar/ ~(39)Ar Age Constraints on Two NNE-Trending Ductile Shear Zones, Yanshan Intraplate Orogen, North China Craton
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~(40)Ar/ ~(39)Ar Age Constraints on Two NNE-Trending Ductile Shear Zones, Yanshan Intraplate Orogen, North China Craton

机译:华北克拉通燕山板内造山带两个NNE向延性韧性剪切带的〜(40)Ar /〜(39)Ar年龄约束

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摘要

Localized regions of large-magnitude extensional strain typified by metamorphic core complexes are prominent geologic and physiographic features of the Yanshan intraplate orogen. Compared to typical metamorphic core complexes defined in the Basin and Range Province of the western United States, an exceptional structural feature is the coexistence of seemingly incompatible earlier strike-slip ductile shear zones and later normal faults in metamorphic core complexes within the orogen. Two such important extensional structures are the Louzidian ductile shear zone and the related Louzidian normal fault in the Kalaqin metamorphic core complex, Inner Mongolia, and the Waziyu ductile shear zone and the related marginal normal fault of the Fuxin Basin in the Yiwulushan metamorphic core complex, western Liaoning Province. Field observations and structural analyses reveal that these two NNE-trending ductile shear zones were genetically related to sinistral strike-slip and extensional faulting, and formed under greenschist-facies conditions. Two samples from the Louzidian ductile shear zone yield a ~(40)Ar/ ~(39)Ar biotite plateau age of 133 Ma and a ~(40)Ar/ ~(39)Ar K-feldspar plateau age of 126 Ma, whereas three synkinematic biotites from the Waziyu ductile shear zone give a ~(40)Ar/ ~(39)Ar plateau age span of 130-116 Ma. These plateau ages record the time of ductile deformation and mylonitization with sinistral strike-slip and extensional movement along the Louzidian and Waziyu ductile shear zones, and thus establish an Early Cretaceous age for such structures. The similarity of these ages to the time when regional strike-slip occurred on the Tan-Lu fault, large-scale gold metallogenesis took place in Eastern China, and the catastrophic mass mortality event resulted in exceptional preservation of the famous Jehol biota imply that these ages not only provide important timing constraints on the first-phase unroofing of the metamorphic core complexes within the Yanshan orogen, but also suggest strong genetic links between these structural phenomena and important metallogenic and paleoen-vironmental events.
机译:以变​​质岩心复合体为代表的大震级伸展应变的局部区域是燕山板内造山带的突出地质和生理特征。与美国西部盆地和山脉省定义的典型变质岩心复合体相比,造山带内变质岩心复合体中似乎不相容的较早走滑韧性延展剪切带和较晚正断层并存。内蒙古卡拉沁变质岩心复合体中的楼子店韧性剪切带和相关的楼子店正断层以及内蒙古乌屋yu韧性变区的瓦子yu韧性剪切带及相关的边缘正断层是两个重要的伸展构造,辽西省。现场观察和结构分析表明,这两个近东近东趋势的韧性剪切带与左旋走滑和伸展断裂具有遗传相关性,并在绿片岩相条件下形成。楼子店延性剪切带的两个样本的〜(40)Ar /〜(39)Ar黑云母高原年龄为133 Ma和〜(40)Ar /〜(39)Ar钾长石高原年龄为126 Ma。 Waziyu韧性剪切带的3个运动学黑云母的〜(40)Ar /〜(39)Ar高原年龄跨度为130-116 Ma。这些高原年龄记录了沿楼子店和瓦子尤延性剪切带的左走向走滑和伸展运动的延性变形和髓鞘化的时间,从而为此类结构建立了早白垩纪。这些年龄与谭庐断裂发生区域性走滑的时间相似,在中国东部发生了大规模的金成矿,而灾难性的大规模死亡事件导致对著名的热河生物群的特殊保存意味着年龄不仅为燕山造山带内变质岩心复合体的第一阶段顶顶提供了重要的时间约束,而且还表明这些结构现象与重要的成矿作用和古环境事件之间存在密切的遗传联系。

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