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The European Synchrotron, the ESRF, is an international research centre based in Grenoble, France.
Through its innovative engineering, pioneering scientific vision and a strong commitment from its 700 staff members, the ESRF is recognised as one of the top research facilities worldwide. Its particle accelerator produces intense X-ray beams that are used by thousands of scientists each year for experiments in diverse fields such as biology, medicine, environmental sciences, cultural heritage, materials science, and physics.
Supported by 19 countries, the ESRF is an equal opportunity employer and encourages diversity.
Thesis subject: Explore process-microstructure-property/functionality-performance relationship in novel aluminium alloys using advanced synchrotron techniques.
You will join ID19's team at the ESRF, Grenoble, France. ID19 is a 150 meter-long ESRF beamline dedicated to high resolution X-ray imaging (radiography and microtomography) using (partially) coherent hard X-rays. The beamline combines a broad range of cutting-edge experimental setups with intense polychromatic illumination for (high-speed) phase contrast X-ray imaging at high photon energies: perfectly suited for in situ studies of materials, operando processes and engineering devices. The aim of the PhD project is to explore the process-microstructure-property/functionality-performance relationship in novel aluminium alloys using advanced synchrotron techniques. This will drive the science of future alloys and transform Europe's capacity in advanced metal manufacturing towards a greener future.
Laser Metal Additive Manufacturing (LMAM) enables rapid fabrication of complex geometries from digital design. LMAM supports sustainability and circular economy by reducing material waste, by placing material only where it is needed in a component, and by extending the service life through the repair and remanufacture of components. The scientific goal of this project is to identify the process-microstructure-property/functionality-performance relationship is novel aluminium alloys to ensure the realisation of the LMAM in industrial production and achieve the targeted circular economy benefits.
Backed up by leading aluminium supplier Constellium and the Centre for Additivie Manufacturing, RMIT (Australia), this project uses advanced synchrotron X-ray imaging and tomography techniques to understand the microstructure and porosity formation mechanisms and how it improves the property/functionality-performance relationship.
Further information may be obtained from: Dr. Alexander Rack (email: [email protected]), from Dr. Yunhui Chen, (email: [email protected])
The successful candidate will be enrolled in the doctoral school at University of Kassel (Germany) and RMIT University (Australia) and based full-time at the ESRF (Grenoble, France), other than a 3-month secondment at Constellium (Voreppe, France). Additional visit(s) totalling no more than 3 months may be made to the RMIT University when needed. Furthermore, a varied pedagogical training programme will be offered to the successful candidate throughout the 3-year PhD project.
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What we offer:
The ESRF is an equal opportunity employer and encourages applications from disabled persons.
The ESRF is an X-ray light source for Europe. It is located in Grenoble, France, and supported and shared by 20 countries.
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