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Effect of Filler Metal on Microstructure and Properties of Titanium Alloy Laser Welding Joints with Filler Wire
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Affiliation:

Harbin Welding Institute Limited Company

Clc Number:

TG442

Fund Project:

This work was financially supported by the national key research and development plan of China (2021YFB3401100);Heilongjiang head goose action plan-advanced welding technology innovation team of energy equipment (201916120);open project of the state key laboratory of new brazing materials and technology (SKLABFMT202005).

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    Abstract:

    Abstract: TC3 solid wire and Ti-Al-V-Mo flux-cored wire were used as filler metals to carry out narrow gap laser welding of TC4 titanium alloy plate. The results show that the micro-scale differences between the two groups are obvious, the length of α" Martensite in the weld zone and coarse grain zone is small, and the width of original β phase grain boundary is narrow in the weld zone The width of α" Martensite lath is about 0.55 μm, a small amount of residual β phase is inserted between α" martensite and a small amount of dislocation is found in α" martensite. The width of acicular α" martensite is about 0.35 μm in Laser flux-cored wire weld, and a small amount of residual β phase is interlaced between Lath α" martensite. Acicular α" martensite contains a small number of fine twins and a large number of dislocation walls, in the same time, more dense dislocations were found at the phase boundary, and the content of residual β phase was a little more. In the weld zone of laser filled solid wire welded joint, the proportion of grain orientation difference greater than 10 ° with large angle grain boundary was about 79.25 %, and that of flux cored wire was about 96.27 %. The average hardness and tensile property of weld zone and HAZ of laser-filled flux-cored wire welded joint is larger than that of laser-filled solid wire welded joint.

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[Fang Naiwen, Huang Ruisheng, Long Weimin, Xu Kai, Li Wei, Wu Pengbo, YIn Limeng, Cao Hao, Ma Yiming, Zou Jipeng. Effect of Filler Metal on Microstructure and Properties of Titanium Alloy Laser Welding Joints with Filler Wire[J]. Rare Metal Materials and Engineering,2023,52(5):1725~1736.]
DOI:10.12442/j. issn.1002-185X.20220303

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History
  • Received:April 12,2022
  • Revised:May 18,2022
  • Adopted:June 08,2022
  • Online: June 08,2023
  • Published: May 29,2023