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WITHDRAWN: Modeling the temperature distribution during laser hardening process
Author(s) -
Amir Mosavi,
Fatemeh Salehi,
László Nádai,
Károly Széll,
Nima E. Gorji
Publication year - 2019
Publication title -
results in physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.743
H-Index - 56
ISSN - 2211-3797
DOI - 10.1016/j.rinp.2019.102759
Subject(s) - hardening (computing) , laser , process (computing) , materials science , mechanics , nuclear engineering , optics , computer science , physics , composite material , engineering , layer (electronics) , operating system
A mathematical model was developed and is presented here to calculate the temperature distribution on the surface and bulk of a steel plate under the laser hardening process. The model starts from the basic heat equation, is then developed to a volumetric form and is connected to the various solid phases existing. The model is based on three strongly influencing parameters of the laser hardening process: velocity of the laser spot and irradiation time. The results are compared to the available experimental data reported in the literature. The volumetric model provides an assessment of temperature distribution in both the vertical and horizontal axis. Laser irradiation at sufficiently high fluence can be used to create a solid state phase change on the surface. Primary calculations show that the temperature profile has a Gaussian distribution in horizontal x-and y-axis and presents an exponentially decreasing distribution in the horizontal and vertical depth directions.

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