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高性能淬火在最小的空间内获得最大的性能

High Performance Quenching
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摘要 近年来,对挤压淬火的的需求变的更加迫切。有三个主要因素促进了这些需求:更快的挤压速度,初出区域长度的限制以及因更快的淬火率而得到的型材性能的改进。这三个因素造成了对在最小空间内获得最大淬火性能的需求。本文研究分析了使淬火过程最优化的方法并详述了利用这些方法的淬火设计。 Recently the demand for extrusion quenching becomes more and more urgent. The optimal quenching methods were analyzed and the quenching designs from these methods were expounded in detail.
出处 《铝加工》 CAS 2012年第6期27-32,共6页 Aluminium Fabrication
关键词 挤压淬火 型材性能 工艺流程 extrusion quenching profile performance process flow
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参考文献8

  • 1Nick Parson, Jeff Hankin, Keith Hicklin and Chris Jowett, "Comparison of Extrusion Performance and Product Characteristics of Three Structural Alloys: AA6061, AA6082 and AA6005A" , Proceedings of the Seventh International Aluminum Extrusion Technology Seminar, Volume 2, 1 - 11, Chicago, Illinois, May 2000, Aluminum Extruders Council and The Aluminum Association.
  • 2Frank Kreith and William Z. Black, Basic Heat Transfer, Harper & Row Publishers, New York, New York, 1980, 15.
  • 3Carl Kramer, "Intensive Cooling of Light Metal Alloy Extrusions by Air and Water" , Proceedings of the Seventh International Aluminum Extrusion Technology Seminar, Volume 1, 401, Chicago, Illinois, May 2000, Aluminum Extruders Council and The Aluminum Association.
  • 4Ibid.
  • 5I. Stewart, J.D. Massingham and J.J. Hagers, "Heat Transfer Coefficient Effects on Spray Cooling", AISE Annual Convention and Iron & Steel Exposition, Pittsburgh, Pennsylvania, September 1995.
  • 6W.S. Peterson and J.E. Dore, "Super Quenching of Aluminum", Symposium on New Developments in Aluminum Technology, Fall Meeting of ASM-AIME, 1968.
  • 7Neil Bryson, "Pulsed Water: From the 60s to the 90s" , Light Metal Age, Fellom Publishing Company, San Francisco, California, June 1994, 45 - 46.
  • 8Adam Cramlet, Brian Henz, Bryan Pearson and Steve Covey, "Smart Quenching", Proceedings of the Seventh International Aluminum Extrusion Technology Seminar, Volume 1, 90, Chicago, Illinois, May 2000, Aluminum Extruders Council and The Aluminum Association.

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