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. Characterised by both motor (e.g., tremor, rigidity, slowness) and non-motor symptoms (e.g., fatigue, anxiety, cognitive decline), PD presents substantial variability between individuals and over time. Current
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-on experience in: Additive manufacturing of High Entropy alloys and Al-based alloys Powder characterization – Microstructure characterization (SEM, EBSD, TEM, XRD) Mechanical testing (tensile, fatigue, creep
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to interpret the results, particularly with regard to determining fatigue using the 4pb process (EN 12697-24, 2018), determining stiffness using the 4pb process (EN 12697- 26, 2018 & A1, 2022), and determining
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bearings, and the main bearing that supports the rotor. Wind loading is highly variable and so bearings can operate at changeable speeds, high and very variable loading [2]. Wear and fatigue failures
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carburizing techniques to improve hardness, wear resistance, and fatigue life of metallic surfaces Perform advanced characterization of thin films, including structural, morphological, mechanical, and chemical
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-term stability and fatigue life of the mooring system. Current engineering design tools represent this interaction in simplified ways, unable to capture the grain-scale processes that govern trenching
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and hard biofouling – marine organisms that increase drag, weight and thermal resistance – potentially modifying the coupled electro-mechanical-fluid loading and causing fatigue and early failure
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varying degrees of progressive disability that affects all areas of life and includes physical impairment, cognitive impairment, and fatigue. This PhD project aims to address key research questions
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-based settings, creating innovative technologies for individualized wound care, and designing targeted interventions to enhance balance, reduce pain, and alleviate fatigue. These efforts aim to expand
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surface treatments for 3D-printed metal lattice prostheses in order to address the challenges of fatigue resistance, corrosion, biocompatibility, osseointegration, and bacterial infection prevention