• CN:11-2187/TH
  • ISSN:0577-6686

›› 1999, Vol. 35 ›› Issue (4): 107-110.

• 论文 • 上一篇    

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铝/铜合金复合材料的多坯料挤压成形

沈健;谢建新;谢水生   

  1. 北京有色金属研究总院;北京科技大学
  • 发布日期:1999-07-01

MULTI-BILLET EXTRUSION OF ALUMINIUM-CLAD COPPER ALLOY RODS

Shen Jian;Xie Jianxin;Xie Shuisheng   

  1. General Research Insatitute for Non-ferrous Metals, Beijing University of Science and Technology Beijing General Research Institute for Non-ferrous Metals, Beijing
  • Published:1999-07-01

摘要: 探讨了采用多坯料挤压法制备铝/黄铜复合棒材的可能性,研究了挤压成形特点、界面结合情况,分析了沿界面附近合金元素的扩散行为。结果表明,挤压力变化规律与材料填充焊合腔、挤压复合成形特征相吻合;复合材界面附近合金元素的扩散明显,并形成具有不同衬度特征的扩散层;挤压温度升高,扩散层厚度增大;棒材沿纵向和横向复合均匀,界面为冶金结合,焊合质量良好。挤压温度过高或过低导致界面结合强度降低。

关键词: 多坯料挤压, 复合材料, 界面, 扩散

Abstract: The fabrication of A199.5 pure aluminium-clad CuZn39Pbl leaded brass bars by multi-billet extrusion (MBE) process at elevated temperatures is investigated. The deformation behaviors of the composite, as well as the bonding between the inner (CuZn39Pbl ) and the outer (A199.5) materials, are studied. The diffusion features of the alloying elements of Cu, Zn and A1 across the interface are analyzed. The results indicate that the variation of extrusion force is consistent with the processes of filling of outer material into welding chamber, cladding of the outer material to core and extrusion of the clad rod. Evident diffusion of the alloying elements across the interface of the composite is confirmed, and diffusion layers with different structural contrast form as a result. The layer thickness increases with the extrusion temperature. The leaded brass core is clad homogeneously by pure aluminium along either longitudinal or cross section of the as-extruded composite rod, and excellent metallurgical welding is attained. The bonding strength of the composite interface is reduced when too low or too high extrusion temperatures are employed.

Key words: Composite materials, Diffusion Interface, Multi-billet extrusion

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