Completed Materials & Manufacturing Engineering

MAPP: EPSRC Future Manufacturing Hub in Manufacture using Advanced Powder Processes

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AI plain-English summary

Powder-based manufacturing could turn nearly 100% of raw material into finished products, slashing the waste and energy that plague conventional shaping and cutting processes. Today, even with recycling, the energy and CO₂ costs of machining away excess material are unsustainable. MAPP aims to make powders—ceramics, metals, polymers—into “designed” ingredients whose surface chemistry and structure are tuned for efficient, reliable processing. The hub will link real-time sensors, computer models, and adaptive control systems to catch defects as they happen, so parts come out right the first time. If successful, this would cut scrap, energy use, and emissions across aerospace and energy sectors, while boosting UK manufacturing productivity. The research is applied and sector-focused: it targets specific technologies like spark plasma sintering, inkjet printing, and additive manufacturing, and aims to deliver commercial products within the grant’s lifetime. The payoff is not a distant breakthrough but a near-term shift in how high-value engineering components are made—less waste, lower cost, and greater confidence in final performance.

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Manufacture Using Advanced Powder Processes - MAPP Conventional materials shaping and processing are hugely wasteful and energy intensive. Even with well-structured materials circulation strategies in place to recondition and recycle process scrap, the energy use, CO2 emitted and financial costs associated are ever more prohibitive and unacceptable. We can no longer accept the traditional paradigm of manufacturing where excess energy use and high levels of recycling / down cycling of expensive and resource intensive materials are viewed as inevitable and the norm and must move to a situation where 100% of the starting material is incorporated into engineering products with high confidence in the final critical properties. MAPP's vision is to deliver on the promise of powder-based manufacturing processes to provide low energy, low cost, and low waste high value manufacturing route and products to secure UK manufacturing productivity and growth. MAPP will deliver on the promise of advanced powder processing technologies through creation of new, connected, intelligent, cyber-physical manufacturing environments to achieve 'right first time' product manufacture. Achieving our vision and realising the potential of these technologies will enable us to meet our societal goals of reducing energy consumption, materials use, and CO2 emissions, and our economic goals of increasing productivity, rebalancing the UK's economy, and driving economic growth and wealth creation. We have developed a clear strategy with a collaborative and interdisciplinary research and innovation programme that focuses our collective efforts to deliver new understanding, actions and outcomes across the following themes: 1) Particulate science and innovation. Powders will become active and designed rather than passive elements in their processing. Control of surface state, surface chemistry, structure, bulk chemistry, morphologies and size will result in particles designed for process efficiency / reliability and product performance. Surface control will enable us to protect particles out of process and activate them within. Understanding the influence between particle attributes and processing will widen the limited palette of materials for both current and future manufacturing platforms. 2) Integrated process monitoring, modelling and control technologies. New approaches to powder processing will allow us to handle the inherent variability of particulates and their stochastic behaviours. Insights from advanced in-situ characterisation will enable the development of new monitoring technologies that assure quality, and coupled to modelling approaches allow optimisation and control. Data streaming and processing for adaptive and predictive real-time control will be integral in future manufacturing platforms increasing productivity and confidence. 3) Sustainable and future manufacturing technologies. Our approach will deliver certainty and integrity with final products at net or near net shape with reduced scrap, lower energy use, and lower CO2 emissions. Recoupling the materials science with the manufacturing science will allow us to realise the potential of current technologies and develop new home-grown manufacturing processes, to secure the prosperity of UK industry. MAPP's focused and collaborative research agenda covers emerging powder based manufacturing technologies: spark plasma sintering (SPS), freeze casting, inkjet printing, layer-by-layer manufacture, hot isostatic pressing (HIP), and laser, electron beam, and indirect additive manufacturing (AM). MAPP covers a wide range of engineering materials where powder processing has the clear potential to drive disruptive growth - including advanced ceramics, polymers, metals, with our initial applications in aerospace and energy sectors - but where common problems must be addressed.

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Researchers

Ali Hassanpour (Co-Investigator)Andrew Bayly (Co-Investigator)Andrew Mullis (Co-Investigator)Candice Majewski (Co-Investigator)Eduardo Saiz Gutierrez (Co-Investigator)Finn Giuliani (Co-Investigator)George Panoutsos (Co-Investigator)Iain Todd (Principal Investigator)James Hughes (Co-Investigator)Kamran MUMTAZ (Co-Investigator)Luc Vandeperre (Co-Investigator)Martin Jackson (Co-Investigator)Michael Preuss (Co-Investigator)Patrick Grant (Co-Investigator)Peter Lee (Co-Investigator)Philip Prangnell (Co-Investigator)Philip Withers (Co-Investigator)Visakan Kadirkamanathan (Co-Investigator)W Rainforth (Co-Investigator)

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Research Grant

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