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Erschienen in: Optical and Quantum Electronics 11/2016

01.11.2016

Numerical simulation of solute evolution during laser cladding with nickel superalloy powder injection

verfasst von: F. Kh. Mirzade, M. D. Khomenko, V. G. Niziev

Erschienen in: Optical and Quantum Electronics | Ausgabe 11/2016

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Abstract

A transient 3‐D numerical model including heat transfer, solute transport and phase change kinetics is developed for laser cladding with coaxial injection of nickel superalloy powders. The evolution of the temperature and composition distributions of the built‐up layer is investigated. The modified Kolmogorov–Johnson–Mehl–Avrami equation is used for phase change modeling considering non‐homogeneous temperature distribution of the melt pool. The influence of self-consistent heat conduction and phase change kinetics as well as of substrate boundary and soluble impurity atoms on the phase change process is analyzed. The results indicate the influence of solute concentration on the rapid crystallization process and can be used for the clad layer dimensions and microstructure estimation in laser cladding with nickel superalloy powder injection.

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Metadaten
Titel
Numerical simulation of solute evolution during laser cladding with nickel superalloy powder injection
verfasst von
F. Kh. Mirzade
M. D. Khomenko
V. G. Niziev
Publikationsdatum
01.11.2016
Verlag
Springer US
Erschienen in
Optical and Quantum Electronics / Ausgabe 11/2016
Print ISSN: 0306-8919
Elektronische ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-016-0779-4

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