4.7 Article

Modeling of laser transmission contour welding process using FEA and DoE

Journal

OPTICS AND LASER TECHNOLOGY
Volume 44, Issue 5, Pages 1281-1289

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.optlastec.2011.12.049

Keywords

Laser transmission welding; Finite element analysis; Design of experiments

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In this research, a systematic investigation on laser transmission contour welding process is carried out using finite element analysis (FEA) and design of experiments (DoE) techniques. First of all, a three-dimensional thermal model is developed to simulate the laser transmission contour welding process with a moving heat source. The commercial finite element code ANSYS (R) multi-physics is used to obtain the numerical results by implementing a volumetric Gaussian heat source, and combined convection-radiation boundary conditions. Design of experiments together with regression analysis is then employed to plan the experiments and to develop mathematical models based on simulation results. Four key process parameters, namely power, welding speed, beam diameter, and carbon black content in absorbing polymer, are considered as independent variables, while maximum temperature at weld interface, weld width, and weld depths in transparent and absorbing polymers are considered as dependent variables. Sensitivity analysis is performed to determine how different values of an independent variable affect a particular dependent variable. (C) 2012 Elsevier Ltd. All rights reserved.

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