Formation of structural and mechanical inhomogeneities in explosion welding of aluminium to titanium

被引:9
作者
Gurevich, L.M. [1 ]
Trykov, Yu. P. [1 ]
Kiselev, O.S. [1 ]
机构
[1] Volgograd State Technical University, Volgograd
关键词
aluminium; explosion welding; intermetallic; layered composite; melted metal; micromechanical properties; titanium;
D O I
10.1080/09507116.2013.796663
中图分类号
学科分类号
摘要
The results of investigation of the bonding zone in the titanium-aluminium composite produced by explosion welding in conditions close to the upper boundary of weldability are presented. Local heterogeneous alloys consist of a solid solution matrix based on aluminium with aluminium nitride particles. The increase in deformation energy resulted in the increase in the size of the area, the volume of the alloys and the volume content of the aluminides. Formation of the alloys did not reduce the maximum strain capacity of the joint. © 2014 © 2014 Taylor & Francis.
引用
收藏
页码:128 / 132
页数:4
相关论文
共 9 条
  • [1] Erokhin A.V., Et al., The properties of explosion-welded titanium-aluminium joints, Svar Proiz., 7, pp. 26-27, (1972)
  • [2] Deribas A.A., Physics of hardening and explosion welding, (1972)
  • [3] Lysak V.I., Et al., Investigation of the strength of explosion-welded titanium-aluminium composite materials, pp. 13-19, (1995)
  • [4] Lysak V.I., Kuz'min S.V., Explosion welding, (2005)
  • [5] Trykov Y.P., Et al., Relationships governing the formation of structural-mechanical inhomogeneity in explosion welding of aluminium to nickel, Izv Volgograd Gosud Tekhn Univ, 3, 59, pp. 11-15, (2009)
  • [6] Kattner U.R., Et al., Thermodynamic assessment and calculation of the Ti-Al system, Metall Mater Trans., 23, 8, pp. 2081-2090, (1992)
  • [7] Sedykh V.S., The structure of molten areas, formed at the interface of metals in explosion welded joints, pp. 36-45, (1995)
  • [8] Samsonov G.V., Properties of elements, part 1: Physical properties, a handbook, (1976)
  • [9] Schuster J.C., Palm M., Reassessment of the binary aluminium-titanium phase diagram, J Phase Equilibria Diffu., 27, 3, pp. 255-277, (2006)