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and computational methods to solve real-world problems in materials science and engineering. The focus of this role is on modelling and simulating electrically charged polymer gels called
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of this role is on modelling and simulating electrically charged polymer gels called polyelectrolyte gels. These materials can change their size and shape in response to their environment, which has led
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To undertake research into the functionalisation of natural polymers under the supervision of Prof. Andrew Dove and Dr Deborah Crawford. To design, characterise and study both solution and melt phase methods
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Modelling and characterisation of chip formation and machining induced defects of nano-particle toughened Carbon Fibre Polymer Composites School of Mechanical, Aerospace and Civil Engineering PhD
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High-Performance Laser Powder Bed Fusion of Polymer Parts Using Quantum Cascade Laser Arrays School of Electrical and Electronic Engineering PhD Research Project Self Funded Dr Kristian Groom
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Process-aware optimal design of polymer Additive Manufactured (3D Printed) components via hybrid layout and topology optimisation School of Mechanical, Aerospace and Civil Engineering PhD Research
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of 24 months. The project aim’s to develop new constitutive models to describe the mechanical behaviour of Thermoplastic Elastomers (TPEs). These polymers are increasingly being developed as a
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on developing previously identified polymers that show an ability to prevent bacterial biofilm formation on surfaces. The polymer has already been successfully CE-marked as a urinary catheter coating, and this
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: NanoporousMaterial Synthesis (MOFs, COFs, zeolites, polymer, silica), Crystallography, Spectroscopy Physics: Nanofluidics (nanoscale water), Molecular Dynamics, Thermodynamics Materials: Colloids, Gel, Polymer
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of less raw materials and generating less waste. Recently, we have developed SDLs which can effectively screen a wide range of reaction conditions for generating polymer and nanoparticle-based products(see