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Welding is an important fabrication process. Complex parts fabricated using forming, machining and metal removal processes are assembled into a larger part using welding. The welding process involves a number of physical processes that play a role in determining the performance of the joint. This course offers detailed analysis and modeling techniques that apply to the different physical phenomena take place during welding.
This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer needs to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.
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Course Credit: NPTEL
|Introduction to fusion welding processes: part 1/2||00:32:00|
|Introduction to fusion welding processes: part 2/2||00:32:00|
|Heat sources part 1/2||00:30:00|
|Heat sources part 2/2||00:41:00|
|Thermal Modeling Part 1/2||00:43:00|
|Thermal Modelling – Part 2/2||00:47:00|
|Fluid flow modelling – part 1/2||00:42:00|
|Zones in a weldment||00:43:00|
|Conduction to Keyhole mode||00:28:00|
|Solute transfer modelling – part 1/2||00:24:00|
|Solute transfer modelling – part 2/2||00:37:00|
|Solute segregation profile – part 1/2||00:26:00|
|Solute segregation profile – part 2/2||00:21:00|
|Fluid flow modelling – part 2||00:37:00|
|Microstructure Formation in Fusion Welds||00:40:00|
|Analytical Solutions to Weld Thermal Field||00:29:00|
|Numerical Solutions to Thermal Field and Fluid Flow in Welding – Part 1||00:45:00|
|Numerical Solutions to Thermal Field and Fluid Flow in Welding – Part 2||00:53:00|
|Submit Your Assignment||00:00:00|
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