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细微文化突显临沧品牌文化内涵的思考
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作者 唐伟 《临沧师范高等专科学校学报》 2013年第3期18-20,共3页
文章结合临沧品牌文化挖掘的现状,提出在通过深入调查研究、注重梳理归纳、挖掘文化脉络、建立有效机制四种举措全面挖掘临沧的细微文化基础之上,找准载体,让突显有力度,即让城乡规划和房屋设计成为临沧的文化名片;让手工艺术品的制作... 文章结合临沧品牌文化挖掘的现状,提出在通过深入调查研究、注重梳理归纳、挖掘文化脉络、建立有效机制四种举措全面挖掘临沧的细微文化基础之上,找准载体,让突显有力度,即让城乡规划和房屋设计成为临沧的文化名片;让手工艺术品的制作彰显着临沧的文化魅力;让音乐、舞蹈等艺术创作呈现着临沧的风土人情;让饮食积淀着临沧特有的饮食文化;让庄园成为临沧"世界佤乡·天下茶仓"的精品文化缩影;让节庆活动成为推介临沧文化的创意产业。 展开更多
关键词 细微文化 凸显 临沧 品牌文化
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Role of plastic deformation in tailoring ultrafine microstructure in nanotwinned diamond for enhanced hardness 被引量:4
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作者 胡文涛 温斌 +8 位作者 黄权 肖建伟 于栋利 王雁宾 赵智胜 何巨龙 柳忠元 徐波 田永君 《Science China Materials》 SCIE EI CSCD 2017年第2期178-185,共8页
Nanotwinned diamond(nt-diamond),which demonstrates unprecedented hardness and stability,is synthesized through the martensitic transformation of onion carbons at high pressure and high temperature(HPHT).Its hardne... Nanotwinned diamond(nt-diamond),which demonstrates unprecedented hardness and stability,is synthesized through the martensitic transformation of onion carbons at high pressure and high temperature(HPHT).Its hardness and stability increase with decreasing twin thickness at the nanoscale.However,the formation mechanism of nanotwinning substructures within diamond nanograins is not well established.Here,we characterize the nanotwins in nt-diamonds synthesized under different HPHT conditions.Our observation shows that the nanotwin thickness reaches a minimum at ~20 GPa,below which phase-transformation twins and deformation twins coexist.Then,we use the density-functional-based tight-binding method and kinetic dislocation theory to investigate the subsequent plastic deformation mechanism in these pre-existing phase-transformation diamond twins.Our results suggest that pressure-dependent conversion of the plastic deformation mechanism occurs at a critical synthetic pressure for nt-diamond,which explains the existence of the minimum twin thickness.Our findings provide guidance on optimizing the synthetic conditions for fabricating nt-diamond with higher hardness and stability. 展开更多
关键词 nanotwinned diamond high temperature and high pressure(HTHP) plastic deformation HARDNESS
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