欢迎登录材料期刊网

材料期刊网

高级检索

纳米复合WC-Co粉末的烧结是纳米晶WC-Co硬质合金制末的烧结研究进展,包括纳米复合粉末的烧结特性、烧结机理和常用的烧结方法.

参考文献

[1] Brookes K J A .News: Hard Materials at Euro PM 2002[J].International Journal of Refractory Metals and Hard Materials,2003,21:81.
[2] Gille G;Szesny B;Dreyer K et al.Submicron and ultrafine grained hardmetals for microdrills and metal cutting inserts[J].International Journal of Refractory Metals and Hard Materials,2002,20:3.
[3] Lassner E;Schubert W D.Tungsten-properties, chemistry, technology of the element, alloys, and chemical compounds[M].London: Kluwer Academic / Plenum Publishers,2000
[4] Upadhyaya G S.Cemented tungsten carbides-production,properties, and testing[M].USA:Noyes Publications,West wood,1998
[5] Yao Z G;Stiglich J J;Sudarshan T S .Nanosized WC-Co holds promise for the future[R].Metal Powder Report,1998.
[6] Dunmead S D;Moore W G;Weimer A W et al.Method for making submicrometer carbides,submicrometer solid solution carbides,and the materials resulting therefrom[P].US 5380688,1995.
[7] Dow finds cost effective route to fine WC powders[R].Metal Powder Report,1997.
[8] Koc R.;Kodambaka S.K. .Tungsten carbide (WC) synthesis from novel precursors[J].Journal of the European Ceramic Society,2000(1):1859-1869.
[9] B. Vamsi Krishna;K. V. Gaganpreet;H. Bhunia .Synthesis of WC-Co nanocomposites by using polymers as in situ carbon source[J].International journal of nanoscience,2002(2):139-148.
[10] El-Eskandarany M S;Mahday A A;Ahmed H A et al.Synthesis and characterizations of ball-milled nanocrys talline WC and nanocomposite WC-Co powders and subsequent consolidations[J].Journal of Alloys and Compounds,2000,312:315.
[11] Kim B K;Lee G G;Ha G H et al.Mechanochemical process for producing fine WC/Co composite powder[P].US 5882376,1997-07-25.
[12] Ban ZG.;Shaw LL. .Synthesis and processing of nanostructured WC-Co materials[J].Journal of Materials Science,2002(16):3397-3403.
[13] Wahlberg S .Nanostructured hard material composites by molecular engineering, Part 1: Synthesis from soluble tungstate salts[J].Nano-Structured Materials,1997,9:105.
[14] Zhang Z;Wang M;Muhammed M;Wahlberg S .Processing of nanostructured WC-Co powder from precursor obtained by co-precipitation[J].Nanostructured Materials,1999(1/4):163-166.
[15] Muhammed M;Wahlberg S;Grenthe I .Method of preparingpowders for hard materials[P].US 5594929,1997.
[16] Zhang ZY.;Muhammed M. .Thermochemical decomposition of cobalt doped ammonium paratungstate precursor[J].Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems,2003(1/2):235-245.
[17] McCandlish L E;Kear B H;Bhatia S J .Spray conversion process for the production of nanophase composite powders[P].WorldPat,WO91/07244.1991-05-30;USPat,5352269,1994-10-04.
[18] McCandlish L E;Kear B H;Kim B K .Carbothermic reaction process for making nanophase WC-Co powder[P].WO rldPat,WO 9302962.1993-02-18;US Pat,5230729,1993-07-27.
[19] Yamamoto Y;Matsumoto A;Doi Y.Properties of ultra fine tungsten carbide and cemented carbide by carburization[A].Reutte, Austria:Plansee AG,1997:596.
[20] 邵刚勤;段兴龙;谢济仁 等.无η相碳化钨-钴纳米复合粉未的工业化制备方法[P].CN 99116597.7,1999-08-13.
[21] 纳米晶复合碳化钨-钴粉末的工业化制备技术[J].材料导报,2000(07):55-58.
[22] 邵刚勤,段兴龙,谢济仁,张枫,吴伯麟,袁润章.WC-Co非金属-金属纳米复合结构的形成与控制[J].硅酸盐学报,2002(01):40-44.
[23] Shao G Q;Wu B L;Duan X L.Nanocrystalline grains & superfine particles of tungsten carbide-cobalt powders[A].USA:The American Ceramic Society,2000:375.
[24] Shao G Q;Duan X L;Wu B L.Continuous reduction carburisation mechanism of precursor-derived nanocrystalline WC-Co[A].USA:The American Ceramic Society,2000:207.
[25] Put S;Vleugels J;Anné G et al.Functionally gradeed hardmetals with a continuously graded symmetrical profile[J].Materials Science Forum,2003,423-425:33.
[26] Tokita M .Large size WC/Co functionally graded materials fabricated by spark plasma sintering (SPS) method[J].Materials Science Forum,2003,423-425:39.
[27] Z. -G. Ban;L. L. Shaw .Characterization of thermal sprayed nanostructured WC-Co coatings derived from nanocrystalline WC-18wt.%Co powders[J].Journal of Thermal Spray Technology,2003(1):112-119.
[28] Czyzniewski A .Deposition and some properties of nanocrystalline WC and nanocomposite WC/α-C : H coatings[J].Thin Solid Films,2003,433(1-2):180.
[29] Ken Brookes .Leading Europe in extruded carbide[J].Metal Powder Report,2002(1):26-29.
[30] Yang M J;German R M .Nanophase and superfine cement ed carbides processed by powder injection molding[J].International Journal of Refractory Metals and Hard Materials,1998,16:107.
[31] 史琳琳,曾令可,王慧.纳米陶瓷的成型方法研究进展[J].材料导报,2003(z1):72-74.
[32] 雷燕,熊惟皓.陶瓷材料纳米烧结研究进展[J].材料导报,2003(05):28-30.
[33] Moriguchi H;Tsuduki K;Ikegaya A .Ultrafine grained cemented carbides sintered by pulsse current process[J].Powder Metallurgy,2000,43(01):17.
[34] Hayashi K;Asada N;Yamamoto R et al.Hard alloy and its production[P].JP 11152535,1999-06-08.
[35] A. Sampath;J.J. Stiglich;T.S. Sudarshan .Fast Consolidation of WC-Co[J].Powder Metallurgy,2002(1):25-27.
[36] Cha SI.;Hong SH.;Kim BK. .Spark plasma sintering behavior of nanocrystalline WC-10Co cemented carbide powders[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2003(1/2):31-38.
[37] Groza J R;Dowding R J .Nanoparticulate materials densification[J].Nanostructured Materials,1996,7:749.
[38] Agrawal D;Papworth A J;Cheng J.Microstructural examination by TEM of WC/Co composites prepared by conventional and microwave processes[A].Reutte, Austria: Plansee Holding AG,2001:677.
[39] Arato P;Bartha L;Toth A L.Sinter-HIP treatment of hard metal from nano-crystalline WC powder[A].Reutte, Austria: Plansee GmbH,1997:658.
[40] Arato P;Bartha L;Porat R .Solid or liquid phase sintering of nanocrystaliine WC/Co hardmetals[J].Nano-Structured Materials,1998,10(02):245.
[41] 廖为鑫;解子章.粉末冶金过程热力学分析[M].北京:冶金工业出版社,1984
[42] German M.Liquid phase sintering[M].New York: Plenum Press,1985
[43] J. Liu;A.L. Cardamone;R.M. German .Estimation of capillary pressure in liquid phase sintering[J].Powder Metallurgy,2001(4):317-324.
[44] 王国栋.硬质合金生产原理[M].北京:冶金工业出版社,1988
[45] Kim S;Han S-H;Park J-K et al.Variation of WC grain shape with carbon content in the WC-Co alloys during liquid-phase sintering[J].Scripta Materialia,2003,48:635.
[46] German R M .Supersolidus liquid phase sintering-Part Ⅰ :process review[J].International Journal of Powder Metallurgy,1990,26(01):23.
[47] German R M .Supersolidus liquid phase sintering - Part Ⅱ: densification theory[J].International Journal of Powder Metallurgy,1990,26(01):35.
[48] Hyoung R. Lee;Deug J. Kim;Nong M. Hwang .Role of Vanadium Carbide Additive during Sintering of WC-Co: Mechanism of Grain Growth Inhibition[J].Journal of the American Ceramic Society,2003(1):152-154.
[49] Rajendra K. Sadangi;Larry E. McCandlish;Bernard H. Kear;Purnesh Seegopaul .Grain growth inhibition in liquid phase sintered nanophase WC/Co alloys[J].International Journal of Powder Metallurgy,1999(1):27-33.
[50] Whitefield D J;Luyckx S;Witcomb M J.Microstructure and properties of fine grained WC-VC-Co hardmetal with cobalt content ranging from 10 to 15 wt %.In: Kneringer G,Rodhammer P,Wilhartitz P (eds)[A].Reutte,Austria:Plansee AG,1997:477.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%