This course explores the impact of hydrogen environments on the structural integrity of metallic components, focusing on predicting hydrogen embrittlement in alloys through multiscale numerical modeling. It emphasizes understanding hydrogen diffusion, trapping mechanisms, and microstructural interactions to develop more resilient materials for hydrogen infrastructure.
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This course explores the impact of hydrogen environments on the structural integrity of metallic components, focusing on predicting hydrogen embrittlement in alloys through multiscale numerical modeling. It emphasizes understanding hydrogen diffusion, trapping mechanisms, and microstructural interactions to develop more resilient materials for hydrogen infrastructure.
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400 Students
AI/ML, Systems, Theory, Human-Computer Interaction
Access to cutting-edge research labs and industry partnerships
92.0
Starting 2026-04-01
Apply before 2125-04-18
Starting 2025-07-01
Apply before 2125-04-18
Starting 2025-10-01
Apply before 2125-04-18
Starting 2026-01-01
Apply before 2125-04-18
Sep 2025
Curriculum:The models will be validated by comparing them with experimental data. There is a provision to perform exhaustive experiments as part of this project outcomes:A comprehensive multiscale modelling framework to predict hydrogen diffusion and trapping behaviour in metallic alloys.A deeper understanding of the mechanisms by which hydrogen interacts with various microstructural features, leading to embrittlement.Enhanced ability to predict the susceptibility of different metallic alloys to hydrogen embrittlement under varying service conditions.Check out the full curriculumVisit programme website
Applicants should hold or expect a minimum 2:1 (or equivalent) in engineering, physics, or mathematics. Required application materials include an academic transcript detailing modules and grades, a degree certificate if already graduated, a personal statement outlining motivation, relevant skills, and career goals, and a research proposal if applicable. These documents should demonstrate academic competence and a strong interest in the research area.
₹32,82,675/Year
Annual Fee
3 years
Total Duration
No Living costs available.
No University Scholarships Available
N/A
Amount
1250 USD
Deadline
Not specified
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Amount
Various benefits
Deadline
Not specified
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Amount
Various benefits
Deadline
Not specified
N/A
Amount
2000 USD
Deadline
15 Apr 2025
N/A
Amount
300 EUR
Deadline
Anytime
No Eligibility Requirements Available
No Application Steps Available
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