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Applied Physics (alloy) PhD Projects, Programs & Scholarships

We have 6 Applied Physics (alloy) PhD Projects, Programs & Scholarships

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  Development of Smart Memory Alloy with Enhanced Structural Performance under fire (Advert Reference: SF18-2/MCE/GONZALEZ SANCHEZ)
  Dr S Gonzalez Sanchez, Dr K Poologanathan, Dr B Nagaratnam
Applications accepted all year round

Funding Type

PhD Type

Shape memory alloys (SMAs) are special materials with a substantial potential for various structural engineering applications. The novelty of such materials lies in their ability to undergo large deformations and return to their un-deformed shape through stress removal or heating (shape-memory effect).
  Cellular Automaton to Model Rapid Crystal Growth and Recrystallisation
  Dr A Roy, Dr K Baxevanakis
Applications accepted all year round

Funding Type

PhD Type

Texture in materials plays a crucial role in metallic products. A thorough study of the underlying morphology and its evolution is relevant for producing cast parts of innovative technological products.
  Heat Assisted Magnetic Recording Using Exchange Bias
  Dr G Vallejo Fernandez
Applications accepted all year round

Funding Type

PhD Type

Heat Assisted Magnetic Recording (HAMR) is considered to be the next technology to improve current magnetic recording densities. The principle of HAMR is that a laser delivers heat pulses via near field optics to the surface of a conventional disc with grains oriented in the perpendicular direction.
  A microstructure-informed model to predict the deformation and shear bands formed during a nickel superalloy machining operation
  Dr H Basoalto
Applications accepted all year round

Funding Type

PhD Type

The School of Metallurgy and Materials is seeking a high calibre candidate for a PhD studentship in materials modelling.
  Layers? No Layers? Or both: Multi-disciplinary study of partially stratified layers in Earth’s outer core
  Dr S Rost, Dr J Mound, Dr A Nowacki, Dr C Davies
Application Deadline: 6 January 2020

Funding Type

PhD Type

The Earth’s magnetic field is essential for life on Earth and is produced in Earth’s outer core. Numerical models of the geodynamo show that a combination of chaotic convection of the liquid iron-nickel alloy and Earth’s rotation produces the flow structures essential for the geodynamo process.
  Ductility & Brittleness in Refractory and High-entropy Alloys
  Dr C Brandl
Applications accepted all year round

Funding Type

PhD Type

For a significant increase in operating temperatures in energy conversion processes, alternative constituent phases for new high-temperature alloys beyond tradition Ni-basis superalloys have to be explored.
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