Inverse prediction of local interface temperature during electromagnetic pulse welding via precipitate kinetics

Li, Jishuai;Sapanathan, Thaneshan;Raoelison, Rija Nirina;Zhang, Zhan;Rachik, Mohamed;et.al.
(2019) Materials Letters — Vol. 249, p. 177-179 (2019)

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Authors
  • Li, JishuaiUniversité de technologie de Compiègne
    Author
  • Sapanathan, Thaneshanorcid-logoUCLouvain
    Author
  • Raoelison, Rija NirinaUniversité de Bourgogne Franche-Comté – UTBM
    Author
  • Zhang, ZhanAluminium Research Centre-REGAL, University of Quebec at Chicoutimi
    Author
  • Simar, AudeUCLouvain
    Author
  • Rachik, MohamedUniversité de technologie de Compiègne
    Author
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Abstract
Interface temperature of electromagnetic pulse welding is difficult to measure by insitu methods. Here, the local temperature rise is investigated using the kinetics of precipitates and dispersoids (transformation or dissolution) at the interface zone (IZ) and affected zone (AZ) of three welds. This fine scale analysis allows estimating of local temperature range for AZ that reaches between 250 and 360 °C on both sides of narrow IZ, while the IZ itself experiences between 360 and 500 °C or even beyond 500 °C. The interface temperature increases with the increasing impact intensity. The current work estimated thermal field based on the precipitate transformations, which occur during the ultra-fast temperature rise at the interface in electromagnetic pulse welding.
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Citations

Li, J., Sapanathan, T., Raoelison, R. N., Zhang, Z., Chen, X.-G., Marceau, D., Simar, A., & Rachik, M. (2019). Inverse prediction of local interface temperature during electromagnetic pulse welding via precipitate kinetics. Materials Letters, 249, 177-179. https://doi.org/10.1016/j.matlet.2019.04.094 (Original work published 2019)