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作 者:李松林[1] 刘务华 武治锋[1] 李昆[1] 袁勇 崔建民
机构地区:[1]中南大学粉末冶金国家重点实验室,长沙410083 [2]湖南晶鑫动力电池股份有限公司,长沙410013 [3]莱钢集团粉末冶金有限公司,山东莱芜271105
出 处:《粉末冶金技术》2006年第5期345-348,378,共5页Powder Metallurgy Technology
基 金:国家自然科学基金项目(50574105);湖南省自然科学基金项目(05JJ30096)
摘 要:采用溶液还原法,以硫酸镍为原料,水合肼为还原剂制备了超细和纳米镍粉。研究了不同分散剂对镍粉粒度和粒度分布的影响。X射线衍射结果表明,所得粉末为纯Ni相,晶粒尺寸约13nm;激光粒度分布测试结果表明,Ni粉粒度分布较窄,中位径集中在0.7~0.8μm,最大粒径不超过2.0μm。透射电镜照片显示粉末近球形,一次颗粒粒径在50~100nm之间,有轻微团聚。改变分散剂种类(PVP、PEG1500、PEG20000、CTAC)和用量可使超细镍粉的比表面积在3.24~57.88m^2/g间变化。Ultrafine and nanosized nickel powder was synthesized in a solution containing NiSO4· 6H2O and N2H4·H2O. Various kinds of dispersants were added to the solution to investigate their effect on the nickel powder particle size and particle size distribution. X-ray measurement shows that the synthesized powder consists of pure nickel phase with grain size of about 13nm. Laser particle size determination shows the resultant nickel powder has a narrow particle size distribution with maximum particle size less than 2.0μm and D50 is in the range of 0.7 - 0.8μm. Transmission electron microscopy determination shows the nickel powder is of spheric shape with grain size ranged from 50 - 100nm and has slight agglomeration. The specific surface area of the nickel powder can be altered from 3.24- 57.88m^2/g by changing kind and amount of the dispersant PVP.PEG1500.PEG20000 or CTAC.
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