CN

张林杰

教授    Supervisor of Doctorate Candidates    Supervisor of Master's Candidates

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  • Education Level:With Certificate of Graduation for Doctorate Study

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Numerical simulation of full penetration laser welding of thick steel plate with high power high brightness laser

Release Time:2025-04-30
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Date:
2025-04-30
Title of Paper:
Numerical simulation of full penetration laser welding of thick steel plate with high power high brightness laser
Journal:
Journal of Materials Processing Technology
Summary:
Full penetration laser welding was carried out on a 10mm steel plate using a 16kW maximum power continuous wave thin disk laser. Upper surface and lower surface of molten pool were observed synchronously with two high speed CCD cameras during the welding process. The lower surface was much longer and more unstable than the upper one. A three dimensional laser deep penetration welding model in which volume of fluid (VOF) method was combined with a ray-tracing algorithm was used to simulate the dynamic coupling between keyhole and molten pool in laser full penetration welding. The calculated weld cross section morphology and molten pool length on both upper side and lower side agree well with experimental results. Evolution of molten pool in lower side during full penetration laser welding was analyzed, periodical features of energy coupling, molten pool behavior and keyhole dynamics in laser full penetration welding were identified and discussed.
Co-author:
LJ Zhang, JX Zhang, A Gumenyuk, M Rethmeier, SJ Na
Volume:
214(8)
Page Number:
1710-1720
Translation or Not:
No
Date of Publication:
2014-08-01