A Comprehensive Model for Laser Hardening of Carbon Steels

Author:

Fortunato Alessandro1,Ascari Alessandro1,Liverani Erica2,Orazi Leonardo1,Cuccolini Gabriele3

Affiliation:

1. e-mail:

2. e-mail:  Department of Industrial Engineering, University of Bologna, Bologna, Italy 40136

3. e-mail:  Department of Sciences and Methods for Engineering, University of Modena and Reggio Emilia, Reggio Emilia, Italy 42100

Abstract

This article illustrates the development of a complete and exhaustive mathematical model for the simulation of laser transformation hardening of hypo-eutectoid carbon steels. The authors propose an integrated approach aimed at taking into consideration all the phenomena involved in this manufacturing process, with particular attention to implementing easy mathematical models in order to optimize the trade-off between the accuracy of the predicted results and the computational times. The proposed models involve the calculation of the 3D thermal field occurring into the workpiece and predict the microstructural evolution of the target material exploiting an original approach based on the definition of thermodynamic thresholds, which can be considered as a physical constant of the material itself. Several parameters and phenomena are taken into consideration in order to accurately simulate the process: laser beam characteristics, fast austenization of the steel, and tempering effect due to mutually interacting beam trajectories. The accuracy of the model is presented by means of hardness comparisons between hardness predictions and measurements in single and double paths surface treating of AISI 1040.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference18 articles.

1. Laser Hardening Process With 2d Scanning Optics;Phys. Procedia,2012

2. The Transformation Hardening of Steel Surfaces by Laser Beams: I Hypo-Eutectoid Steels;Acta Metall.,1984

3. Computer Simulation on Structural Changes of Hypoeutectoid Steel in Laser Transformation Hardening Process;JSME Int. J., Ser. I,1989

4. A Two-Dimensional Diffusion Model for the Prediction of Phase Transformations: Application to Austenitization and Homogenization of Hypoeutectoid Fe-C steels;Acta Mater.,1997

5. A Combined Model for the Description of Austenitization, Homogenization and Grain Growth in Hypoeutectoid Fe–C Steels During Heating;Acta Mater.,1999

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