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Recent progress in studies on the nano-sized particle layer in rock shear planes

Yan SunDepartment of Earth Sciences, State Key Laboratory of Mineral Deposites Research, Nanjing University, Nanjing 210093, ChinaLiangshu ShuDepartment of Earth Sciences, State Key Laboratory of Mineral Deposites Research, Nanjing University, Nanjing 210093, ChinaXiancai LuDepartment of Earth Sciences, State Key Laboratory of Mineral Deposites Research, Nanjing University, Nanjing 210093, ChinaHao LiuDepartment of Earth Sciences, State Key Laboratory of Mineral Deposites Research, Nanjing University, Nanjing 210093, ChinaXihui ZhangDepartment of Management Information Systems, University of Memphis, Memphis, Tennessee 38152, USAAiming LinDepartment of Geosciences, Shizuoka University, Shizuoka 422-8529, JapanKazuo KosakaDepartment of Geosystem Sciences, Nihon University, Tokyo 156-8550, Japan
2008en
ABI

Аннотация

Since the 1990s, an ultramicro-particle texture in nano- or micron-sized scale has been continually found in shear planes of various rocks, and recently further progress was made in generic physical mechanisms. In this article, the characteristics of the nano-sized particle layer in rock shear planes (including widespread distribution, layering texture, non-linear genetic mechanism, and multiple functions) on an ultra micro-scale were briefly introduced and more information was obtained by analyzing cases from home and abroad. Our findings suggest that (1) there is a paragenetic relationship between the development of shear frictional-viscous and the formation of nano-sized particles, and (2) in the shear movement, partitioning, segregating, and layering in rocks are initiated by the sliding motion of the nano-sized particle layer. Moreover, the plastic rheology of rocks is essentially the movement of ultra-micro-sized particles (nano-size and micro-size), and the nano-sized particle layer in rock shear planes is characterized by some particular physical and chemical effects.

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