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Field
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involves the development of modeling tools for microstructure-sensitive materials characterization, including finite-element tools and crystal plasticity modeling, extensible to new classes of constitutive
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the prediction of chip formation and service life of the components. Previous experience / requirements: Experimental methods, Finite element modelling, computer programming, Manufacturing Please contact Dr
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thermal finite element analysis Independently manage multiple and/or large mechanical systems projects Mentor less experienced staff in the development of technical and project skills Develop proposals and
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parameter selection and process optimisation. Previous experience / requirements: Experimental methods, Finite element modelling, computer programming, Manufacturing Please contact Dr Hassan Ghadbeigi
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parameter selection and process optimisation. Previous experience / requirements: Experimental methods, Finite element modelling, computer programming, Manufacturing Funding Notes Please note that this
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materials characterization techniques. We will develop on-wafer acoustic microfluidic devices. Necessary skills include finite element simulations, digital signal processing, fabrication, materials
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: Applications accepted all year round Details In analyses of failure in composite laminates, extended finite element analyses using Abaqus (or Ansys) might prove convenient for the prediction of transversal
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for the experimental work to inform the development of the models. Simulation techniques based on the Cellular Automata Finite Element (CAFE) model pioneered in the Department will be explored. Funding Notes 1st or 2:1
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, or other Relevant Discipline. Previous experience / requirements: Finite element modelling, experimental solid mechanics View DetailsEmail EnquiryApply Online
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finite element modelling to simulate the deformation of microstructures, novel crack propagation simulation techniques and scale-transition algorithms. The model will be informed and validated using full