Prediction of Plate Bending by High-Frequency Induction Heating

Author:

Jang Chang-Doo1,Kim Ho-Kyung1,Ha Yun-Sok1

Affiliation:

1. Seoul National University

Abstract

In this study, we developed an analysis method of plate forming by induction heating and verified the effectiveness of the present method through a series of experiments. The phenomena of induction heating is a 3-D transient problem coupled with electromagnetic, heat transfer, and elastoplastic large-deformation analyses. To solve the problem, we suggest a proper model and an integrated system. Using the present analysis model, we can estimate the plate deformation in heating without experiments and simulate the plate bending process of induction heating. A series of induction heating experiments was carried out with various heating conditions such as plate thickness, heat speed, and input power. We measured the transient thermal distribution and final configuration of the plates, and acquired useful data to identify the characteristics of the high-frequency induction heating and for comparison with the analysis results.

Publisher

The Society of Naval Architects and Marine Engineers

Subject

Mechanical Engineering,Ocean Engineering

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1. Using Machine Learning to Predict Heat Affected Zone in Steel Induction Heating;2022 22nd International Conference on Control, Automation and Systems (ICCAS);2022-11-27

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3. Introduction;FE Computation on Accuracy Fabrication of Ship and Offshore Structure Based on Processing Mechanics;2021

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5. Analysis for the angular deformation of steel plates in a high-frequency induction forming process with a triangle heating technique;Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture;2013-02-06

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