期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
ICF物理实验用纳米Cu块体靶材的制备研究 被引量:16
1
作者 楚广 唐永建 +4 位作者 罗江山 刘伟 杨天足 黎军 洪伟 《强激光与粒子束》 EI CAS CSCD 北大核心 2005年第12期1829-1834,共6页
采用自悬浮定向流法制备了金属纳米粉体并采用真空手套箱专利技术和冷压法在高压(1.5GPa)作用下保压40 min后,成功制备出了相对密度达97%和显微硬度达1.85 GPa的金属Cu纳米晶材料。经XRD分析,其晶粒大小为20 nm。正电子湮没(PAS)实验结... 采用自悬浮定向流法制备了金属纳米粉体并采用真空手套箱专利技术和冷压法在高压(1.5GPa)作用下保压40 min后,成功制备出了相对密度达97%和显微硬度达1.85 GPa的金属Cu纳米晶材料。经XRD分析,其晶粒大小为20 nm。正电子湮没(PAS)实验结果表明,其空隙大小和数量与采用惰性气体冷凝法原位压制(IGC)的样品相比,空位簇数量较多,微空隙的大小和数量基本相当。激光惯性约束聚变(ICF)模拟实验表明:采用该方法制备的纳米Cu块体材料靶的激光转换效率比常规Cu材料靶高5倍。 展开更多
关键词 金属纳米晶体 纳米cu块体 惯性约束聚变靶材料 自悬浮定向流法 显微硬度
下载PDF
Corrosion behavior of bulk two-phase Ag-25Cu alloys with different microstructures in NaCl aqueous solution
2
作者 Zhong-qiu CAO Xiao-tong YIN +4 位作者 Zhong-qiu JIA Qiu-yue TIAN Jie LU Ke ZHANG Yan WANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第7期1495-1502,共8页
In order to have a better understanding on the corrosion mechanisms of bulk two-phase Ag-25Cu (at.%) alloys with different microstructures, two bulk nanocrystalline Ag-25Cu alloys and one coarse grained counterpart we... In order to have a better understanding on the corrosion mechanisms of bulk two-phase Ag-25Cu (at.%) alloys with different microstructures, two bulk nanocrystalline Ag-25Cu alloys and one coarse grained counterpart were prepared by liquid phase reduction (LPR), mechanical alloying (MA) and powder metallurgy (PM) methods, respectively. Their corrosion behavior was investigated comparatively using electrochemical methods in NaCl aqueous solution. Results show that the microstructure of the coarse grained PMAg-25Cu alloy is extremely inhomogeneous. On the contrary, compared with PMAg-25Cu alloy, the microstructures of the nanocrystalline LPRAg-25Cu and MAAg-25Cu alloys are more homogeneous, especially for LPRAg-25Cu alloy. The corrosion rate of MAAg-25Cu alloy is higher than that of PMAg-25Cu alloy, but lower than that of LPRAg-25Cu alloy. Furthermore, the passive films formed by three Ag-25Cu alloys exhibit n-type semiconducting properties. The passive current density of LPRAg-25Cu alloy is lower than that of PMAg-25Cu alloy, but higher that of MAAg-25Cu alloy. 展开更多
关键词 nanocrystalline Ag-cu bulk alloy mechanical alloying liquid phase reduction microstructure electrochemical corrosion
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部