Comparison of analytical and computational thermal models for gas metal arc braze welding

Sanjiv E. Shah, Jason C. Lee, Carlos Rios-Perez, Carolyn Conner Seepersad

Producción científica: Capítulo del libro/informe/acta de congresoContribución a la conferenciarevisión exhaustiva

Resumen

Analytical and computational models are constructed for predicting the temperature distribution in a workpiece during gas metal arc braze-welding (GMABW). Specifically, the weld zone is modeled with Rosenthal's analytical model, a finite difference model (FDM) and a finite volume computational model, constructed in the FLUENT® software package. Each model relates controllable braze-welding process parameters, such as traverse speed and applied voltage, to the temperature field that develops during the braze-welding process. Model-based predictions are validated by comparison with experimental data obtained from braze-welded specimens of C22000 commercial bronze alloy (CuZn90/10%wt). Temperature data are collected during the braze-welding process via thermocouples and infrared pyrometers aimed at the top surface of the specimen. Recommendations are made regarding the range of applicability and limitations of the models. In addition, opportunities are discussed for applying these models as part of an automated control framework for GMABW.

Idioma originalInglés
Título de la publicación alojadaProceedings of the ASME Summer Heat Transfer Conference 2009, HT2009
Páginas919-928
Número de páginas10
DOI
EstadoPublicada - 2009
Publicado de forma externa
Evento2009 ASME Summer Heat Transfer Conference, HT2009 - San Francisco, CA, Estados Unidos
Duración: 19 jul. 200923 jul. 2009

Serie de la publicación

NombreProceedings of the ASME Summer Heat Transfer Conference 2009, HT2009
Volumen2

Conferencia

Conferencia2009 ASME Summer Heat Transfer Conference, HT2009
País/TerritorioEstados Unidos
CiudadSan Francisco, CA
Período19/07/0923/07/09

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