Abstract

The simulation model of the High Frequency Induction Cladding (HFIC) is built using three-dimensional (3D) and its dependability is validated by the experimental measurement result. Firstly, a mathematical 3D model with respect to the HFIC process is established with corresponding assumptions and border condition. Secondly, the 3D model of the FEM simulation is validated by comparing the calculation results and the experimental results. Thirdly, the thermal distributions at vary time are investigated by the 3D model simulation. The results show that the 3D model simulation has signiflcant efiect on the analysis of the thermal distribution, optimal cladding process, and crystal phase transition. It is possible to obtain an ideal temperature distribution for the HFIC process using the 3D simulation calculation.

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