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Industrial welding processes

01UIDRP

A.A. 2019/20

Course Language

English

Course degree

Doctorate Research in Gestione, Produzione E Design - Torino

Course structure
Teaching Hours
Lezioni 15
Teachers
Teacher Status SSD h.Les h.Ex h.Lab h.Tut Years teaching
De Maddis Manuela Ricercatore ING-IND/16 5 0 0 0 2
Teaching assistant
Espandi

Context
SSD CFU Activities Area context
VET/10    
2019/20
PERIOD: SEPTEMBER The course, which ranks among the activities of the new interdepartmental research center J-TECH@POLITO (Advanced Joining Technologies), aims at presenting to the PhD students the main industrial welding processes, as well as those based on mechanical joining through plastic deformation. The course also includes laboratory activities to acquire practical knowledge on some welding processes, on their numerical modeling, as well as on joint inspection.
PERIOD: SEPTEMBER The course, which ranks among the activities of the new interdepartmental research center J-TECH@POLITO (Advanced Joining Technologies), aims at presenting to the PhD students the main industrial welding processes, as well as those based on mechanical joining through plastic deformation. The course also includes laboratory activities to acquire practical knowledge on some welding processes, on their numerical modeling, as well as on joint inspection.
Introduction to the main industrial joining processes. Fundamentals of welding metallurgy and thermo-mechanical analysis of welding processes. Pre- and post-weld heat treatments. Corrosion aspects of welded joints. Fusion welding processes (by arc, laser source, and electrical resistance) and brazing. Solid state welding processes: friction welding, friction stir welding, friction stir spot welding. Mechanical joining technologies: riveting, clinching and other joints through plastic deformation. Unconventional and innovative welding technologies. Classification of welding defects and techniques for joint inspection. Main welding standards. Laboratory experiences related to numerical simulation and realization of welded joints through one or more of the welding technologies available at the interdepartmental research center J-TECH@POLITO.
Introduction to the main industrial joining processes. Fundamentals of welding metallurgy and thermo-mechanical analysis of welding processes. Pre- and post-weld heat treatments. Corrosion aspects of welded joints. Fusion welding processes (by arc, laser source, and electrical resistance) and brazing. Solid state welding processes: friction welding, friction stir welding, friction stir spot welding. Mechanical joining technologies: riveting, clinching and other joints through plastic deformation. Unconventional and innovative welding technologies. Classification of welding defects and techniques for joint inspection. Main welding standards. Laboratory experiences related to numerical simulation and realization of welded joints through one or more of the welding technologies available at the interdepartmental research center J-TECH@POLITO.
 DEMADDIS: Processi di saldatura per l’industria – Industrial welding processes periodo: 14 - 18 SEPTEMBER 2020.
 DEMADDIS: Processi di saldatura per l’industria – Industrial welding processes periodo: 14 - 18 SEPTEMBER 2020.
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