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ABA laser cladding ABA cladding is a variant of laser cladding that was recently developed at The University of Nottingham. By generating clad coatings by first depositing parallel but separated "A
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pathology, chemical ecology, molecular biology, metabolomics, transcriptomics, bioinformatics, and systems biology, the research will uncover the mechanisms governing interactions within the wheat–aphid
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pathology, chemical ecology, molecular biology, metabolomics, transcriptomics, bioinformatics, and systems biology, the research will uncover the mechanisms governing interactions within the wheat–aphid
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the development of frameworks for classifying and matching waste materials to viable reuse pathways. In parallel, the project will explore constraints on implementation, including material variability, supply
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of blades to discs using solid-state joining is a key factor in achieving cost-effective, high performance and low-weight fan and compressor stages in aero-engines. LFW is an established joining process
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of blades to discs using solid-state joining is a key factor in achieving cost-effective, high performance and low-weight fan and compressor stages in aero-engines. LFW is an established joining process
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of blades to discs using solid-state joining is a key factor in achieving cost-effective, high performance and low-weight fan and compressor stages in aero-engines. LFW is an established joining process
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life cycle by: Reducing material usage during manufacture. Improving electrical system efficiency and power-to-weight ratios during operation. Enhancing recyclability and resource recovery at end of life
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life cycle by: Reducing material usage during manufacture. Improving electrical system efficiency and power-to-weight ratios during operation. Enhancing recyclability and resource recovery at end of life
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Lasers and the circular economy High powered lasers are not routinely linked with the circular economy, however intelligent application of these highly controllable and flexible materials processing