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采用传统蜡基粘结剂和(油+蜡)基改进粘结剂两种粘结剂,对粒度为1.97μm的WC-8Co混合粉末注射成形,研究了两种喂料的热脱脂、溶剂脱脂+热脱脂工艺,确定了热脱脂、溶剂脱脂+热脱脂的优化工艺曲线.从脱脂速度和脱脂时间、脱脂缺陷和脱脂工艺控制的难易程度等方面比较了两种粘结剂的热脱脂和溶剂脱脂效果.研究了热脱脂温度、时间不同脱脂方式以及粘结剂组成对脱脂坯碳含量的影响.结果表明,以氢气为脱脂气氛,在450℃以下进行热脱脂可以将有机聚合物完全脱除而且不产生脱碳,溶剂脱脂后再进行热脱脂更有利于控碳和减少脱脂缺陷,而且大大缩短脱脂时间.(油+蜡)基改进粘结剂在热脱脂和溶剂脱脂时具有更好的脱脂特性.

参考文献

[1] Bruhn J;Terselius B .MIM offers increased applications for submicron WC-10%Co[J].Metal Powder Report,1999,1:30.
[2] Lane P D;James P J .PIM may offer cheaper cutting tool[J].Metal Powder Report,1994,7:22.
[3] Sung H J .Application of MIM for manufacturing WC-Co milling inserts[J].Journal of the Japan Society of Powder and Powder Metallurgy,1999,46(08):887.
[4] Poniatowski D;Will G .Injection molding of tungsten carbide base hard metals[J].Mathematica Policy Research,1988,12:812.
[5] Yang M J;German R M .Nanophase and superfine cemented carbides processed by powder injection molding[J].International Journal of Refractory Metals and Hard Materials,1998,16:107.
[6] Martyn M F;James P J .The processing of hardmetal componenets by powder injection molding[J].International Journal of Refractory Metals and Hard Materials,1994,12:61.
[7] 祝宝军,曲选辉,陶颖,肖平安,秦明礼.硬质合金注射成形脱脂过程中的碳含量控制[J].中国有色金属学报,2002(04):791-796.
[8] 李晓明,李益民,黄伯云,范景莲,张健.粉末注射成形硬质合金异形件热脱脂工艺的研究[J].硬质合金,2001(04):214-217.
[9] 曲选辉,范景莲.纳米晶钨基重合金粉末的注射成型与固相烧浇[J].材料研究学报,2001(01):130-134.
[10] Fan J L;Huang B Y;Qu X H .Distortion prediction and control of injection molded tungsten heavy alloy[J].Journal of Advanced Materials,2004,36(01):72.
[11] 范景莲,黄伯云,曲选辉,刘军.注射成形钨合金用新型粘结剂的研究[J].粉末冶金技术,2003(03):131-134.
[12] Fan Jinglian,Huang Baiyun,Qu Xuanhui,Li Yiming.LOW TEMPERATURE THERMAL DEBINDING BEHAVIOR OF WAX-BASED MULTI-COMPONENT BINDER FOR TUNGSTEN HEAVY ALLOY[J].中国有色金属学会会刊(英文版),1999(01):93-98.
[13] Yang M J;German R M .The interaction between cemented carbide powder and the binder of powder injection moulding feedstock[J].Advances in Powder Metallurgy and Particulate Materials,1995,6:179.
[14] Hwang K.S.;Hsieh Y.M. .Comparative Study of Pore Structure Evolution During Solvent and Thermal Debinding of Powder Injection Molded Parts[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,1996(2):245-253.
[15] Hwang K S;Tsou T H .Pore structure evolution in metal injection molded part during thermal debinding[J].Scripta Metallurgica et Materialia,1992,12:655.
[16] 范景莲,夏佩华,胡婧,曲选辉,黄伯云,孙玲.钨基高比重钨合金注射坯溶剂脱脂工艺[J].中国有色金属学报,2001(04):651-654.
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