球磨时间和转速对球磨法制备纳米锑粉的影响Effect of milling time and milling rate on nano-Sb powders prepared by wet ball milling
徐建林,郭强,康昭,席国强
摘要(Abstract):
以250μm大小的锑粉为原料,在添加相同含量蒸馏水和烷基酚聚氧乙烯醚的条件下,采用湿法机械球磨的方式制备出不同类型的锑基粉末。采用XRD、TEM及FT-IR对制备的锑基粉末的结构、形貌及粒径大小进行了表征分析,研究了球磨时间和球磨转速对锑粉制备的影响。结果表明:当锑粉原料中加入1 ml/g蒸馏水和0.2 ml/g OP-10湿磨时,球磨转速为150 r/min、球磨时间为18 h可制备出分散良好、粒径分布均匀、平均粒径约为10 nm的锑粉。
关键词(KeyWords): 锑;球磨;纳米粉
基金项目(Foundation): 浙江省自然科学基金(LY12E01002);; 甘肃省有色金属新材料省部共建国家重点实验室开放基金(SKL12012)
作者(Author): 徐建林,郭强,康昭,席国强
DOI: 10.13289/j.issn.1009-6264.2013.06.006
参考文献(References):
- [1]Gregory J D,Zhao X Y,Krick B,et al.Environmental effects on the tribology and microstructure of MoS2-Sb2O3-C Films[J].Tribol Lett,2011,42(2):203-213.
- [2]Bryngelsson H,Eskhult J,Nyholm L,et al.Electrodeposited Sb and Sb/Sb2O3 nanoparticle coatings as anode materials for Li-ion batteries[J].ChemMater,2007,19(5):1170-1180.
- [3]Tigau N,Ciupina V,Prodan G.Structural,optical and electrical properties of Sb2O3 thin films with different thickness[J].J Optoelectro Adv Mater,2006,8(1):37-42.
- [4]何敏,王启立,孙智.浸锑石墨摩擦磨损特性研究[J].润滑与密封,2006(9):155-156.HE Min,WANG Qi-li,SUN Zhi.Research on friction and wear behaviour of graphite/antimony comoposites[J].Lubrication Engineering,2006(9):155-156.
- [5]Park C M,Sohn H J.Novel antimony/aluminum/carbon nanocomposite for high-performance rechargeable lithium batteries[J].Chem Mater,2008,20(9):3169-3173.
- [6]Kim H W,Kim H S.Growth of Sb2O3 submicron rods by the thermal evaporation of a mixture of Zn and Sb powders[J].Ceramics International,2011,37(2):593-598.
- [7]Eva S T,Lucie B,Matej S,et al.Antimony powder-modified carbon paste electrodes for electrochemical stripping determination of trace heavy metals[J].Electrochimica Acta,2011,56(2):6673-6677.
- [8]Liu Y,Qian Y,Wang C,et al.Preparation of nanocrystalline antimony powders by usingγ-ray radiation method[J].Materials Research Bulletin,1996,31(8):973-977.
- [9]徐建林,杨树华,高威,等.纳米锑颗粒的制备及其分散性研究[J].航空材料学报,2012,32(1):57-62.XU Jian-lin,YANG Shu-hua,GAO Wei,et al.Study on preparation of nanosized Sb and dispersion of Sb in liquid media[J].Journal of AeronauticalMaterials,2012,32(1):57-62.
- [10]Caer G L,Delcroix P,Begin-colin S,et al.High-energy ball-milling of alloys and compounds[J].Hyperfine Interactions,2002,141-142(1-4):63-72.
- [11]王明,谌启明.表面活性剂在超细硬质合金球磨工艺中的作用及研究进展[J].稀有金属与硬质合金,2008,36(4):49-52.WANG Ming,CHEN Qi-ming.The action and latest development of surfactants in the ball milling process of ultrafine cemented carbide[J].RareMetals and Cemented Carbides,2008,36(4):49-52.
- [12]唐楷,颜杰,黄新.表面活性剂在硬质合金球磨工艺中的应用研究[J].中国钨业,2007,22(4):33-35.TANG Kai,YAN Jie,HUANG Xin.The application study of surfactants in the ball milling process of ultrafine cemented carbide[J].China TungstenIndustry,2007,22(4):33-35.
- [13]Doroshchuk V A,Kulichenko S A.Preconcentration of cadmium with OP-10 nonionic surfactant phases at the cloud point[J].Journal of AnalyticalChemistry,2005,60(5):400-403.
- [14]刘银,王静,张明旭,等.机械球磨法制备纳米材料的研究进展[J].材料导报,2003,17(7):20-22.LIU Yin,WANG Jing,ZHANG Ming-xu,et al.Research and development of mechanical attrition method in nanostructurai materials[J].MaterialsReview,2003,17(7):20-22.
- [15]蔡晓兰,林兴铭,王国富.用高能球磨法制备超细鳞片状锌粉[J].世界有色金属,2004(4):48-50.CAI Xiao-lan,LIN Xing-ming,WANG Guo-fu.The preparation of super fine flake zinc powder by the high energy ball milling[J].World NonferrousMetals,2004(4):48-50.
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