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walls reinforced with iron-based shape memory alloys (Fe-SMAs). The PhD project aims to develop a nonlinear finite element modeling framework to simulate the mechanical bond behavior between 3D printed
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by residual elements affect formability (Prof Dan Balint) (4) Effects of residual elements on mechanical and fracture properties (Prof Catrin Davies) (5) Investigation of thermomechanical behaviour and
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designing for the complete product life-cycle. Topics in parametric design and design optimization using Finite Element Analysis (FEA), Computer-Aided Design (CAD), and Manufacturing (CAM) are introduced in
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of how thin a metal sheet current technology can cut and handle. Previous experience / requirements: Skills in mechanics of materials (design and data analysis in mechanical testing), Modelling and
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public speaking ability. Experience with finite element method and solid mechanics necessary. Past TA duties must include marking or demonstrating or tutoring. Proficiency in English required as assessed
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program, or a combination of these will be considered. General knowledge of Finite Element Analysis using ANSYS, COMSOL, or equivalent software. Thorough knowledge of MATLAB, Python or equivalent software
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-based micro-finite element (microFE) models of the mouse alveolar bone can be used to evaluate accurately the bone stiffness, bone strength and local deformation, as compared against state-of-the-art
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material synthesis, processing, characterization, device fabrication process simulation for fabrication, and development of advanced materials and material systems. Development of finite element models
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engineering challenges? In this role, you’ll take the lead in design validation and verification using Finite Element Analysis (FEA) and dynamic simulation techniques. You will also have the opportunity
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computational mechanics and numerical modeling methods such as finite element analysis (FEA) and multi-body dynamics for hydro-mechanical drilling systems Proficient in structural dynamics modeling and system