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THE SELF-GRINDING MECHANISM AND AFFECTING FACTORS OF BULK MATERIAL IN FLUID MOTION
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作者 俞良中 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 1997年第Z1期146-151,共6页
The fluidity and classification of bulk material (loose body) were introduced, the self-grinding mechanism and the affecting factors of bulk materials in various forms of phase, state and motion were investigated. A r... The fluidity and classification of bulk material (loose body) were introduced, the self-grinding mechanism and the affecting factors of bulk materials in various forms of phase, state and motion were investigated. A rotational-flow-state centrifugal autogenous grinder was developed on the basis of applying self-grinding mechanism of bulk material,the result tested by the autogenous grinder was compared with that tested by 4R Raymond mills, and fine particles with extremely high specific area were obtained. The feasibility of the developed new-type autogenous grinder in the view of fluid motion of bulk material was proved. 展开更多
关键词 motion of bulk material self-grinding mechanism new developed mill
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Self-Exfoliation of Flake Graphite for Bioinspired Compositing with Aramid Nanofiber toward Integration of Mechanical and Thermoconductive Properties 被引量:1
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作者 Limei Huang Guang Xiao +4 位作者 Yunjing Wang Hao Li Yahong Zhou Lei Jiang Jianfeng Wang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2022年第10期235-247,共13页
Flexible yet highly thermoconductive materials are essential for the development of next-generation flexible electronic devices.Herein,we report a bioinspired nanostructured film with the integration of large ductilit... Flexible yet highly thermoconductive materials are essential for the development of next-generation flexible electronic devices.Herein,we report a bioinspired nanostructured film with the integration of large ductility and high thermal conductivity based on self-exfoliated pristine graphene and three-dimensional aramid nanofiber network.A self-grinding strategy to directly exfoliate flake graphite into few-layer and few-defect pristine graphene is successfully developed through mutual shear friction between graphite particles,generating largely enhanced yield and productivity in comparison to normal liquid-based exfoliation strategies,such as ultrasonication,high-shear mixing and ball milling.Inspired by nacre,a new bioinspired layered structural design model containing three-dimensional nanofiber network is proposed and implemented with an interconnected aramid nanofiber network and high-loading graphene nanosheets by a developed continuous assembly strategy of sol-gel-film transformation.It is revealed that the bioinspired film not only exhibits nacre-like ductile deformation behavior by releasing the hidden length of curved aramid nanofibers,but also possesses good thermal transport ability by directionally conducting heat along pristine graphene nanosheets. 展开更多
关键词 Graphene Aramid nanofiber self-grinding exfoliation Bioinspired structure Functional material
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珠磨驱动微晶石墨自研磨高效制备小尺寸石墨烯作为导电添加剂
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作者 黄丽梅 李豪 +3 位作者 王新新 丁元力 王建锋 江雷 《Science China Materials》 SCIE EI CAS CSCD 2022年第9期2463-2471,共9页
在过去十五年,将块状石墨直接高产率、高效率地剥离为石墨烯一直是一个重大挑战.针对这一问题,本文提出了一种自研磨剥离新概念,即利用石墨颗粒之间相互剪切摩擦,从微晶石墨矿中剥离石墨烯.实验中通过微珠作为研磨介质驱动高浓度石墨晶... 在过去十五年,将块状石墨直接高产率、高效率地剥离为石墨烯一直是一个重大挑战.针对这一问题,本文提出了一种自研磨剥离新概念,即利用石墨颗粒之间相互剪切摩擦,从微晶石墨矿中剥离石墨烯.实验中通过微珠作为研磨介质驱动高浓度石墨晶体颗粒相互研磨的过程成功执行了这一概念.经证实,自研磨大幅提高了石墨烯的剥离产率(从6.3%提高至100%),并获得了破纪录的剥离效率(7.5 g^(-1)hL^(-1)),在实验室实现了从微晶石墨到石墨烯的公斤级转化.所制备的石墨烯纳米片横向尺寸小(298 nm),C/O原子比与起始微晶石墨相同,导电性良好.该小尺寸石墨烯适合作为锂离子电池的导电添加剂,在改善电池的比容量和循环稳定性方面优于商用碳基导电颗粒. 展开更多
关键词 self-grinding exfoliation microcrystalline graphite GRAPHENE conductive additive
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