Effect of ultrasonic application during friction stir welding on microstructure and properties of AA2024 fixed joints

Alexander Eliseev, Sergei Tarasov, Sergei V. Fortuna, Valery Rubtsov, Tatiana Kalashnikova

Research output: Chapter in Book/Report/Conference proceedingConference contribution

7 Citations (Scopus)

Abstract

Microstructure and mechanical properties of aluminum alloy 2024 fixed joint produced by ultrasonic assisted friction stir welding are described. Tensile strength, microhardness, grain size and zone area are measured and compared with ones of joint produced without ultrasonic vibration. Analyzing this data authors make conclusion about ultrasonic vibration effect on friction stir welding joint quality.

Original languageEnglish
Title of host publicationMultifunctional Materials: Development and Application
Subtitle of host publicationDevelopment and Application
PublisherTrans Tech Publications Ltd
Pages227-231
Number of pages5
Volume683
ISBN (Print)9783038357292
DOIs
Publication statusPublished - 2016
Event12th International Conference on Prospects of Fundamental Sciences Development, PFSD 2015 - Tomsk, Russian Federation
Duration: 21 Apr 201524 Apr 2015

Publication series

NameKey Engineering Materials
Volume683
ISSN (Print)1013-9826

Conference

Conference12th International Conference on Prospects of Fundamental Sciences Development, PFSD 2015
CountryRussian Federation
CityTomsk
Period21.4.1524.4.15

Fingerprint

Ultrasonic applications
Friction stir welding
Ultrasonics
Microstructure
Vibrations (mechanical)
Microhardness
Aluminum alloys
Tensile strength
Mechanical properties

Keywords

  • Mechanical properties
  • Microstructure
  • Ultrasonic-assisted friction stir welding

ASJC Scopus subject areas

  • Materials Science(all)
  • Mechanics of Materials
  • Mechanical Engineering

Cite this

Eliseev, A., Tarasov, S., Fortuna, S. V., Rubtsov, V., & Kalashnikova, T. (2016). Effect of ultrasonic application during friction stir welding on microstructure and properties of AA2024 fixed joints. In Multifunctional Materials: Development and Application: Development and Application (Vol. 683, pp. 227-231). (Key Engineering Materials; Vol. 683). Trans Tech Publications Ltd. https://doi.org/10.4028/www.scientific.net/KEM.683.227

Effect of ultrasonic application during friction stir welding on microstructure and properties of AA2024 fixed joints. / Eliseev, Alexander; Tarasov, Sergei; Fortuna, Sergei V.; Rubtsov, Valery; Kalashnikova, Tatiana.

Multifunctional Materials: Development and Application: Development and Application. Vol. 683 Trans Tech Publications Ltd, 2016. p. 227-231 (Key Engineering Materials; Vol. 683).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Eliseev, A, Tarasov, S, Fortuna, SV, Rubtsov, V & Kalashnikova, T 2016, Effect of ultrasonic application during friction stir welding on microstructure and properties of AA2024 fixed joints. in Multifunctional Materials: Development and Application: Development and Application. vol. 683, Key Engineering Materials, vol. 683, Trans Tech Publications Ltd, pp. 227-231, 12th International Conference on Prospects of Fundamental Sciences Development, PFSD 2015, Tomsk, Russian Federation, 21.4.15. https://doi.org/10.4028/www.scientific.net/KEM.683.227
Eliseev A, Tarasov S, Fortuna SV, Rubtsov V, Kalashnikova T. Effect of ultrasonic application during friction stir welding on microstructure and properties of AA2024 fixed joints. In Multifunctional Materials: Development and Application: Development and Application. Vol. 683. Trans Tech Publications Ltd. 2016. p. 227-231. (Key Engineering Materials). https://doi.org/10.4028/www.scientific.net/KEM.683.227
Eliseev, Alexander ; Tarasov, Sergei ; Fortuna, Sergei V. ; Rubtsov, Valery ; Kalashnikova, Tatiana. / Effect of ultrasonic application during friction stir welding on microstructure and properties of AA2024 fixed joints. Multifunctional Materials: Development and Application: Development and Application. Vol. 683 Trans Tech Publications Ltd, 2016. pp. 227-231 (Key Engineering Materials).
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