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粉末注射成型是一项新型近净成型技术,被用于生产较小尺寸及形状复杂的制品.相比较传统的加工技术,虽然粉末注射成型工艺经济技术优势明显,但是该技术面临的技术问题也十分突出.结合该工艺的特点,本文论述了包括混料、注射成型、脱脂、烧结4道工序中涉及的工艺参数对制品质量的影响.粉末注射成型工艺在陶瓷、金属材料方面得到了很好的应用.

参考文献

[1] Zhu Baojun;Qu Xuanhui;Tao Ying .Powder injection molding of WC-8 percent Co tungsten cemented carbide[J].International Journal of Refractory Metals & Hard Materials,2002(5/6):389-394.
[2] Rudolf Zauner .Micro powder injection moulding[J].Microelectronic engineering,2006(4/9):1442-1444.
[3] Gaurav Aggarwal;Ivi Staid;Seong Jin Park.Development of niobium powder injection molding Part Ⅱ:Debinding and sintering[J].International Journal of Refractory Metals and Hard Materials,2006
[4] 范景莲,李志希,肖琼,刘涛.YG8硬质合金注射成形脱脂工艺的研究[J].中国钨业,2004(05):75-80,87.
[5] 黄培云.粉末冶金原理[M].北京:冶金工业出版社,2004
[6] 戴亚春,王匀,董芳,马欣涛,胡增荣.用超细粉末注射成型金属微细结构的方法[J].模具工业,2006(02):52-56.
[7] Gaurav Aggarwal;Seong Jin Park;Ivi Smid .Development of niobium powder Injection molding:Part I. Feedstock and injection molding[J].International Journal of Refractory Metals & Hard Materials,2006(3):253-262.
[8] Randall M. German .Wear applications offer further growth for PIM[J].Metal Powder Report,1999(6):24-28.
[9] M. Khakbiz;A. Simchi;R. Bagheri .Analysis of the rheological behavior and stability of 316L stainless steel-TiC powder injection molding feedstock[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2005(1/2):105-113.
[10] C. Binet;D. F. Heaney;R. Spina .Experimental and numerical analysis of metal injection molded products[J].Journal of Materials Processing Technology,2005(0):1160-1166.
[11] Eric Nyberg;Megan Miller;Kevin Simmons;K. Scott Weil .Microstructure and mechanical properties of titanium components fabricated by a new powder injection molding technique[J].Materials science & engineering, C. Biomimetic and supramolecular systems,2005(3):336-342.
[12] Hwan-Jin Sung;Tae Kwon Ha;Sangho Ahn .Powder injection molding of a 17-4 PH stainless steel and the effect of sintering temperature on its microstructure and mechanical properties[J].Journal of Materials Processing Technology,2002(0):321-327.
[13] Aparecido Carlos Goncalves .Metallic powder injection molding using low pressure[J].Journal of Materials Processing Technology,2001(1/3):193-198.
[14] Shu GJ;Hwang KS;Pan YT .Improvements in sintered density and dimensional stability of powder injection-molded 316L compacts by adjusting the alloying compositions[J].Acta materialia,2006(5):1335-1342.
[15] F.M. Barreiros;M.T. Vieira .PIM of non-conventional particles[J].CERAMICS INTERNATIONAL,2006(3):297-302.
[16] Loh N H;German R M .Statistical analysis of shrinkage variation for powder injection molding[J].Journal of Materials Processing Technology,1996,59:278-284.
[17] C. Karatas;A. Kocer;A. H.I. Unal .Rheological properties of feedstocks prepared with steatite powder and polyethylene-based thermoplastic binders[J].Journal of Materials Processing Technology,2004(1):77-83.
[18] Guo Shibo;Qu Xuanhui;He Xinbo;Zhou Ting;Duan Bohua .Powder injection molding of Ti-6Al-4V alloy[J].Journal of Materials Processing Technology,2006(3):310-314.
[19] Liu z Y;Loh N H;Tor S B et al.Characterization of powder injection molding feedstock[J].Materials Characterization,2003,49:313-320.
[20] G. Matula;L.A. Dobrzanski;A. Varez .Comparison of structure and properties of the HS12-1-5-5 type high-speed steel fabricated using the pressureless forming and PIM methods[J].Journal of Materials Processing Technology,2005(0):230-235.
[21] K. Scott Weil;Eric Nyberg;Kevin Simmons .A new binder for powder injection molding titanium and other reactive metals[J].Journal of Materials Processing Technology,2006(1/3):205-209.
[22] Supati R;Lohr N H;Khor K A et al.Mixing and characterization of feedstock for powder injection molding[J].Materials Letters,2000,46:109-114.
[23] 李益民,聂妍,李笃信.氧化锆陶瓷注射成形工艺研究[J].陶瓷科学与艺术,2003(05):9-15.
[24] 李笃信,李益民,曲选辉,黄伯云.金属粉末注射成形粘结剂[J].材料导报,2000(05):36-39.
[25] L.A. Dobrzanski;G. Matula;G. Herranz .Metal injection moulding of HS12-1-5-5 high-speed steel using a PW-HDPE based binder[J].Journal of Materials Processing Technology,2006(1/3):173-178.
[26] N.H. Loh;S.B. Tor;K.A. Khor .Production of metal matrix composite part by powder injection molding[J].Journal of Materials Processing Technology,2001(3):398-407.
[27] Barriere Tn;Liu B;Gelin J C.Analyses of powder segregation in MIM[J].Technical Trends,2002
[28] Baojun Zhu;Xuanhui Qu;Ying Tao .Mathematical model for condensed-solvent debinding process of PIM[J].Journal of Materials Processing Technology,2003(2):487-492.
[29] T. Shimizu;A. Kitazima;M. Nose .Production of large size parts by MIM process[J].Journal of Materials Processing Technology,2001(1/3):199-202.
[30] 吴音,司文捷,苗赫濯.陶瓷注射成型脱脂方法对ZrO2陶瓷性能的影响[J].稀有金属材料与工程,2005(09):1477-1480.
[31] 黄勇,龙月洋.高性能陶瓷创新工艺--陶瓷胶态注射成型技术[J].中国陶瓷,2006(05):41-43.
[32] Songlin Li;Baiyun Huang;Yimin Li .A new type of binder for metal injection molding[J].Journal of Materials Processing Technology,2003(1/3):70-73.
[33] 曹树坤,惠继恒.MIM零件连续烧结设备及其控制技术[J].锻压装备与制造技术,2006(01):72-74.
[34] Gerling R.;Schimansky FP. .Prospects for metal injection moulding using a gamma titanium aluminide based alloy powder[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2002(0):45-49.
[35] Krug S;Evans J R G;Ter Maat J H H .Differcntial sintering in ceramic injection moulding:particle orientation effects[J].Journal of the European Ceramic Society,200?,222:173-181.
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