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areas: i. Advanced welding and automation technologies for steel fabrication and construction ii. Experimental investigation of high-strength aluminium alloy structures iii. Development and testing
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to ensure all project deliverables are met. Support research activities in one or more of the following areas: i. Advanced welding and automation technologies for steel fabrication and construction ii
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of project milestones, technical outputs, and reporting requirements. Design and conduct experimental programmes for ultra-low carbon concrete systems, including LC3- and steel slag-based materials, as
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to determine material properties of reclaimed steel. Investigate geometric imperfections, accumulated deformations, and their impact on structural performance, particularly for compression members. Develop data
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protection of steel structures in severe marine environments. The project aims to develop and validate sustainable FRP systems derived from bio-based resins as a next-generation solution for protecting coastal
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conduct experimental programmes for ultra-low carbon concrete systems, including LC3- and steel slag-based materials, as well as steel fibre reinforced concrete (SFRC), covering materials development, mix
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. The Role Green hydrogen produced by water electrolysis is a key technology for decarbonising energy storage, chemicals and steel production. However, the design of porous metal materials at the heart
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. Strong background in structural engineering, structural mechanics, or steel structures. Familiarity with non-destructive testing (NDT) techniques for structural materials is desirable. Experience with
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About the Programme The Trans-Asian Material Histories of Architecture and Conservation programme examines how building materials, craft practices, construction techniques, contractors, commercial