本文概述了温压工艺的特点及其最新的发展,如流动温压、热模压制等,重点讨论了热模压制工艺的技术特点与应用,并指出以AncorMax D为代表的热模压制工艺由于工序比常规温压工艺更简单,压制温度更低,因此在将来很有可能取代常规温压工艺,成为高密度粉末冶金零件的一种非常有应用前景的方法.
参考文献
[1] | 曹勇家.粉末冶金产业化的重要技术方向[J].新材料产业,2004(11):29-37. |
[2] | 黄培云.粉末冶金原理[M].北京:冶金工业出版社,1997 |
[3] | Warm compaction moves into production[J].Metal Powder Report,1996,51(7-8):38-39. |
[4] | 李元元,肖志瑜,倪东惠,周照耀,邵明.温压成形技术的研究进展[J].华南理工大学学报(自然科学版),2002(11):15-20. |
[5] | 叶途明,易健宏,彭元东,李丽娅,杜娟,夏庆林.提高粉末冶金制品压坯密度的新技术[J].粉末冶金工业,2003(06):32-36. |
[6] | 易健宏,叶途明,彭元东.粉末冶金温压工艺的研究进展及展望[J].粉末冶金技术,2005(02):140-144. |
[7] | LAURENT S T;CHAGNON F.Key parameters for warm compaction of high density materials[A].Princeton,NJ:MPIF,1996:125-138. |
[8] | Howard G. Rutz;Francis G. Hanejko .HIGH DENSITY PROCESSING OF HIGH PERFORMANCE FERROUS MATERIALS[J].International Journal of Powder Metallurgy,1995(1):9,11-17-0. |
[9] | RUTZ H G;HANEJKO F G;LUK S .Warm compaction offers high density at low cost[J].Metal Powder Report,1994,49(09):40-47. |
[10] | CAPUS J .Warm compaction attracts scientific interest[J].Metal Powder Report,1996,51(10):12-13. |
[11] | SUN S R;COUCHMAN K.Repressing of warm compacted materials[A].Princeton,NJ:MPIF,1996:109-123. |
[12] | ENGSTROEM U;JOHANSSON B;RUTZ H.High density PM materials for future applications[J].PA,1994(01):57-64. |
[13] | CAPUS J M;PICKERING S;WEAVER A .Hoeganes offers higher density at lower cost[J].Metal Powder Report,1994,49(7-8):22-24. |
[14] | CHAGNON F;TRUDEL Y.Effect of compaction temperature on sintered properties of high density P/M materials[A].Princeton,NJ:MPIF,1995:3-14. |
[15] | DONALSON I;HANEJKO F G.An investigation into the effects of processing methods on the mechanical characteristics of high performance ferrous P/M materials[A].Princeton,NJ:MPIF,1995:51-69. |
[16] | 果世驹.粉末冶金温压技术的进展[J].粉末冶金工业,2003(02):3-8. |
[17] | VELTL G;PETZOLDT F.Warm flow compaction process for complex shaped PM parts[A].Granada,Spain:EPMA,1998 |
[18] | Warm flow compaction fosters more complex PM parts[J].Metal Powder Report,2001(2):26-28. |
[19] | 肖志瑜,柯美元,李元元,倪东惠.温压工艺最新进展--流动温压技术[J].粉末冶金工业,2002(05):28-32. |
[20] | 肖志瑜,张菊红,邵明,李元元.金属粉末流动温压成形的特点及其技术问题分析[J].中国机械工程,2005(03):257-259,281. |
[21] | MARUCCI M L;BARAN M C;NARASIMHAN K S.Properties of high density sinter-hardening P/M steels processed using an advanced binder system[A].Princeton,NJ:MPIF,2002:48-59. |
[22] | DONALDSON I W;LUK S H;POSZMIK G.Processing of hybrid alloys to high densities[A].Princeton,NJ:MPIF,2002:170-185. |
[23] | Ancormax fills in the pores[J].Metal Powder Report,2002(7/8):10-0. |
[24] | Powder metal gears up for a hard-nosed approach[J].Metal Powder Report,2003(6):24-30. |
[25] | Michael L. Marucci .AncorMax D: a unique binder-lubricant for high-density applications[J].Metal Powder Report,2003(10 Suppl.):16-17. |
[26] | P/M premix plus lubricant builds high-density parts[J].Advanced Materials & Processes,2002(8):18-0. |
[27] | Specialised alloys for modern sintering techniques[J].Furnaces International,2003(3):15-16,18-0. |
[28] | Technology pushes green strength up in single press and sinter cycle[J].Metal Powder Report,2004(7):26-28,31-32-0. |
[29] | Peter K. Johnson .P/M INDUSTRY TRENDS IN 2005[J].Advanced Materials & Processes,2005(3):25-28. |
[30] | W. Brian James .HIGH-DENSITY PROCESSING OF POWDERS[J].International Journal of Powder Metallurgy,2005(5):31-36. |
[31] | POSZMIK G;LUK S H.Binder treated products for higher densities and better precision[A].Princeton,NJ:MPIF,2003:33-44. |
[32] | POSZMIK G;MARUCCI M L.Processing P/M components to high density using an advanced lubricant/binder system[A].Princeton,NJ:MPIF,2005:1-7. |
[33] | Francis J. Hanejko .HIGH-PERFORMANCE SINGLE-PRESSES/SINGLE-SINTER PROCESSING[J].International Journal of Powder Metallurgy,2005(5):37-44. |
[34] | POSZMIK G;MARUCCI M L;NARASIMHAN K S.Single pressed single sintered PM products for high density,high performance applications[A].Vienna:EPMA,2004:75-80. |
[35] | ARNHOLD V;DOLLMEIER;KRUZHANOV V.Advanced techniques for the production of high density powder metal parts[A].Vienna:EPMA,2004:558-563. |
[36] | CAPUS J M .PM progress towards wrought steel gear performance[J].Powder Metallurgy,2003,46(04):301. |
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