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- W2022608308 abstract "Pulsed laser quenching of vapor deposited TiC is simulated by a numerical model which combines macroscopic heat flow and microscopic solidification kinetics. The model permits examination of laser induced melting as as crystallization during cooling. Experimentally accessible aspects including the threshold laser fluence for melting, the melt depth, and the grain size can be calculated. The simulation shows the sensitivity of these aspects to various material parameters. By comparing model predictions with experimental measurements, it is therefore possible to estimate unknown thermophysical properties of TiC. Specifically, a high-temperature (2200–3340 K) thermal conductivity of the solid of 45 W/Km, a solid-liquid interfacial energy of around 0·25 J/m2, and an upper limit for the glass transition temperature of 1650 K have been evaluated." @default.
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- W2022608308 date "1992-01-01" @default.
- W2022608308 modified "2023-09-26" @default.
- W2022608308 title "Simulation of laser quenching to assess thermophysical properties of TiC" @default.
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