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In-situ transmission electron microscopy nanoindentation investigation of the deformation behaviour of metallic amorphous/crystalline composites

This project aims to apply the in-situ TEM nanoindentation technique to understand external force induced interaction between crystalline phases and the amorphous matrix. more...

Supervisor(s): Liao, Xiaozhou (Professor)

Effect of twinning on the hardening behaviour of magnesium alloys

The project aims to elucidate the competitive softening and hardening aspects of twinning during mechanical deformation of magnesium alloys. more...

Supervisor(s): Proust, Gwenaelle (Dr)

Dynamic deformation of polycrystalline metals under impact

The project aims to develop a physics-based crystal plasticity model for predicting the dynamic deformation of polycrystalline metals under the high-strain-rate and shock loading co more...

Supervisor(s): Shen, Luming (Associate Professor)

Developing nanoscale analysis techniques for microscopy

This project is a nexus of materials engineering, microscopy and scientific computing. Using advanced microscopy techniques, you will delve into the rich nanostructures and atomic-s more...

Supervisor(s): Ceguerra, Anna (Dr)

Chiroptical phenomena of pi-conjugated materials

pi-conjugated materials are organic molecules with alternate single and double bond character that provide for their semiconducting properties. For example, pi-conjugated polymers ( more...

Supervisor(s): Lakhwani, Girish (Dr)