期刊文献+

泡沫铝夹芯板的制备技术 被引量:23

Manufacturing Technology of Al Foam Sandwich
下载PDF
导出
摘要 泡沫金属是一类具有低密度以及新奇的物理、力学、电学、声学等特殊性能的新型材料。而泡沫铝的潜在用途之一是作为泡沫铝夹芯板的芯材使用。详细介绍了制备泡沫铝夹芯板的不同方法,如胶粘法、超声焊接法、激光协助发泡法、扩散焊接法、面板与预制材料轧制-包覆法和粉末复合轧制法等。通过比较,在国内粉末复合轧制法工艺简单,是最有希望适合高温作业和大批量生产的方法。 Foam aluminums are a new, as yet imperfectly characterized, class of materials with low densities and novel physical, mechanical, thermal, electrical and acoustic properties. One of the potential uses of foam aluminum is used as aluminum foam sandwich. In this paper different manufacture methods of aluminum foam sandwich are introduced, such as glue bonding, ultrasonic welding, laser assisted foaming,diffusion bonding, cladding-rolling bonding, powder sandwich rolling and so on. By comparison, the powder sandwich rolling process is simple and a promising manufacture method, which is suitable to high temperature work and can be produced in bulk.
出处 《材料导报》 EI CAS CSCD 北大核心 2008年第1期85-89,共5页 Materials Reports
基金 国家“863”高技术资助项目(2002AA334060)
关键词 泡沫铝夹芯板 制备方法 粉末复合轧制 高温作业 aluminum foam sandwich, manufacture method, powder sandwich rolling, high temperature work
  • 相关文献

参考文献40

  • 1Ashby M F, Evans A G, Fleck N A. Metal foams:A design guide. Boston: Butterworth-Heinemann, 2000.1
  • 2John Banhart. Manufacture, characterization and application of cellular metals and metal foams. Progress in Materials Scieoce, 2001, 46(3): 559
  • 3蒂吉斯切,克雷兹特.多孔泡沫金属.左孝青,周芸译.北京:化学工业出版社,2005.
  • 4Hans Wolfgang Seeliger. Manufacture of aluminum foam sandwich (AFS) components. Adv Eng Mater, 2002, 4 (10) : 753
  • 5Crupi V, Montanini R. Aluminium foam sandwiches collapse modes under static and dynamic three-point bending. Int J Impact Eng, 2007, 34(3):509
  • 6Basir Shafiq, et al. Fatigue characteristics of foam core sandwich composites. Int J Fatigue, 2006, 28(2) : 96
  • 7Nitin Kulkarni, et al. Fatigue crack growth and life prediction of foam core sandwich composites under flexural loading. Comp Struct, 2003, 59(4): 499
  • 8Claus Burchardt. Fatigue in sandwich structures loaded in transverse shear. Comp Struct, 1998, 40(1): 73
  • 9Burman M, Zenkert D. Fatigue of foam core sandwich beams-2: effect of initial damage. Int J Fatigue, 1997, 19 (7):563
  • 10Huang J S, I.in J Y. Fatigue of cellular materials. Acta Mater, 1996, 44(1): 289

二级参考文献80

  • 1张敏,祖国胤,姚广春,段水亮.泡沫铝夹心板的制备及其界面结合机理的研究[J].功能材料,2006,37(2):281-283. 被引量:27
  • 2Yu C J, Eifert John Banhart H H, Baumeister J. [J]. Original article, 1998, (2) : 181-188.
  • 3Degischer H P,Kriszt B. Cellular Foam Metals[M]. Beijing:Chemical Industry Press.2005.
  • 4Baumeister J, Banhart J ,Weber M. [J]. Meterial & Design,1997,18:217-220.
  • 5Harte A M,Fleck N A,Ashby M F. [J]. Advanced Engineering Material,2002,2 (4) : 219-222.
  • 6Maurer M.Zhao L, Lugscheider E. [J]. Advanced Engineering Material,2002,4(10):791-797.
  • 7Kathuria Y P. [J]. Journal of Materials Processing Technology. 2003,142:466-470.
  • 8Kitazono K,Sato E, Kuribayashi K.[J]. Scripta Materialia,2004, (50) : 495-498.
  • 9Kitazono K, Kitajima A,Sato E. [J]. Materials Science and Engineering, 2002,A327 : 128-132.
  • 10Cavelda E. Hybrid Metallic and Composite Structure[M].Odyssey: A Material nnd Processes, 2001. 586-597.

共引文献71

同被引文献283

引证文献23

二级引证文献135

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部