Formation of structure and mechanical properties of welded joints of titanium-aluminum composites
Abstract
DOI: https://doi.org/10.32820/2079-1747-2019-23-49-57
The article shows that the structure that formed as a result of the liquid-phase diffusion of the layer is dispersed intermetallic inclusions of TiAl3 in the matrix of aluminum-based solid solution. It is shown that the process of diffusion interaction of titanium with liquid aluminum consists of three stages: “initial stage” - low active growth of intermetallic interlayers at the Ti-Al interface; “Growth stage” - intensive formation of dispersed intermetallic TiAl3 particles as a result of reaction at the border with titanium and the growth of an intermetallic layer with a constant for a given temperature TiAl3 content; "Saturation stage" - an increase in the volume content of the TiAl3 phase in the intermetallic layer.
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References
1. Trykov, JuP, Gurevich, LM, Zhorov, AN et al. 2003, ‘Vlijanie deformacii izgiba na kinetiku diffuzii v svarennom vzryvom kompozite OT4–AD1–AMg6’, Perspektivnye materialy, no. 6, pp. 76-80.
Trykov, JuP, Gurevich, LM, Zhorov, AN et al. 2004, ‘Osobennosti deformirovanija i kinetika diffuzii v svarennom vzryvom titano-aljuminievom kompozite’, Fizika i himija obrabotki materialov, no. 3, pp. 50-54.
Trykov, JuP, Gurevich, LM & Zhorov, AN 2005, ‘Diffuzionnye processy v svarennyh vzryvom titano-aljuminievyh soedinenijah’, Konstrukcii iz kompozicionnyh materialov, no. 2, pp. 19-23.
Elmarakbi, A 2014, Advanced Composite Materials for Automotive Applications: Structural Integrity and Crashworthiness, John Wiley & Sons, Delhi.
Ashutosh Tiwari, Moha mmad Rabia Alenezi, Seong Chan Jun Advanced (eds.) 2016, Composite Materials, Scrivener Publishing LLC, New Delhi.