Modeling of electric and heat processes in spot resistance welding of cross-wire steel bars

Author:

Iatcheva Ilona1,Darzhanova Denitsa2,Manilova Marina3

Affiliation:

1. Dept. of Theoretical Electrical Engineering, Technical University of Sofia, Sofia, 1000, Bulgaria

2. Dept. Electrical Measurement Systems, Technical University of Sofia, Sofia, 1000, Bulgaria

3. Institute of Metal Science “Acad. A. Balevski”, Bulgarian Academy of Sciences, Sofia, 1574, Bulgaria

Abstract

AbstractThe aim of this work is the modeling of coupled electric and heat processes in a system for spot resistance welding of cross-wire reinforced steel bars. The real system geometry, dependences of material properties on the temperature, and changes of contact resistance and released power during the welding process have been taken into account in the study.The 3D analysis of the coupled AC electric and transient thermal field distributions is carried out using the finite element method. The novel feature is that the processes are modeled for several successive time stages, corresponding to the change of contact area, related contact resistance, and reduction of the released power, occurring simultaneously with the creation of contact between the workpieces. The values of contact resistance and power changes have been determined on the basis of preliminary experimental and theoretical investigations.The obtained results present the electric and temperature field distributions in the system. Special attention has been paid to the temperature evolution at specified observation points and lines in the contact area. The obtained information could be useful for clarification of the complicated nature of interrelated electric, thermal, mechanical, and physicochemical welding processes. Adequate modeling is also an opportunity for proper control and improvement of the system.

Publisher

Walter de Gruyter GmbH

Subject

General Physics and Astronomy

Reference26 articles.

1. Simulation study of the heating process in contact resistance welding crossed steel bars;J. Mat. Sci. Technol.,2017

2. Control and process based optimisation of spot-welding in manufacturing systems;Int. J. Adv. Manuf. Technol.,1997

3. Control of resistance spot welding using model predictive control;In Proc. 9th International Conference on Electrical and Electronics Engineering,2015

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