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: Thermodynamic modeling of metallic systems, with a focus on technological alloys Cementous Materials: Development and application of innovative cement-based materials in early-stage fabrication Study of
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, and durability. With growing population and urbanisation, demand for concrete is rising steadily. The main binder in concrete is Ordinary Portland Cement (OPC), which accounts for roughly 45% of
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deployment enabling validation and demonstration of real-world applications. For more details, please view https://www.ntu.edu.sg/erian Key Responsibilities: Responsible for new carbon material-enhanced
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Researcher candidate with a strong background in the following areas: alternative cements (e.g., chemistry of calcium silicate and carbonate cements), physics of diffusion and carbonation, early-stage
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clay resources. The project is funded by EPSRC and is titled “Engineered UK clays for production of low-carbon cements” (https://gow.epsrc.ukri.org/NGBOViewGrant.aspx?GrantRef=EP/W022583/1
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, aggregate shakers area, ovens, saws, cement storage room, shrinkage room ; also acquisition and transportation of cement and aggregates). Provide training on specialized equipment as needed to support both
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increased cement contents, giving them a higher carbon footprint per unit volume than ordinary concrete. Therefore, the goal of this project is to gain a deep understanding of digital concrete processing
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, brazed, fused, pressed, cemented or welded joints. Cut or bore through walls, ceilings or partitions. Test piping systems for leaks using gauges. Secure pipes to structures with clamps, brackets and
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-carbon cement/concrete technology. Good communication skills, in particular, the ability to liaise with people from different backgrounds. Excellent understanding and experience with accelerated curing
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to more junior members of the Research Group. You will be based at the world-leading Imperial Centre for Infrastructure Materials (https://www.imperial.ac.uk/infrastructure-materials/ ), and will