Master Thesis - Study of Diffusion Behaviour and Structural Stability in the Bonding Zone of Advanced Composite Metallic Tubes
Core
Investigate diffusion mechanisms, microstructural evolution, and mechanical properties in the bonding zone of advanced composite metallic tubes to support renewable energy material development.
Role type
Master's thesis researcher (materials science/metallurgy)
Builds
Next-generation composite tube materials for industrial applications
Domain
Materials science, metallurgy, high-temperature alloys
Deliverable
research
Required skills
materials characterization, mechanical testing, microstructural analysis (SEM, optical microscopy), thermodynamic and kinetic modelling
Preferred skills
experience with Thermo-Calc and DICTRA, knowledge of Swedish
Technologies
Thermo-Calc, DICTRA, SEM, optical microscopy
Responsibilities
Experimental investigation of diffusion mechanisms and microstructural evolution, mechanical characterization of the bond, microstructural analysis, thermodynamic and kinetic modelling, evaluation of processing-structure-property relationships
Seniority
Master's student