Computer simulations of thermal phenomena in surface heating process using the real distribution of Yb:YAG laser power

This work concerns mathematical and numerical modelling of temperature field during Yb:YAG laser heating of sheets made of S355 steel with the motion of liquid steel in the fusion zone taken into account. Laser power distribution and the caustics are determined on the basis of the geostatistical kri...

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Hauptverfasser: Kubiak, Marcin, Dekýš, Vladimír, Domański, Tomasz, Novák, Pavol, Saternus, Zbigniew
Format: Tagungsbericht
Sprache:eng
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Zusammenfassung:This work concerns mathematical and numerical modelling of temperature field during Yb:YAG laser heating of sheets made of S355 steel with the motion of liquid steel in the fusion zone taken into account. Laser power distribution and the caustics are determined on the basis of the geostatistical kriging method. Temperature field and melted material velocity field in the fusion zone are obtained from the numerical solution of continuum mechanics equations using projection method and finite volume method. Numerical algorithms are implemented into computer solver using ObjectPascal programming language. Computer simulations of Yb:YAG laser heating process are performed for different process parameters. Characteristic zones of experimentally obtained cross sections of heated elements are compared to numerically predicted fusion zone and heat affected zone.
ISSN:2261-236X
2274-7214
2261-236X
DOI:10.1051/matecconf/201815702021