Completed Engineering Materials & Manufacturing

EPSRC Centre for Doctoral Training in Additive Manufacturing and 3D Printing

In plain English

AI plain-English summary

Additive manufacturing—building objects layer by layer rather than cutting them from solid blocks—is already reshaping how products are made, but the UK lacks enough trained engineers and scientists to turn this potential into widespread industrial use. This Centre for Doctoral Training will train cohorts of PhD students across the full spectrum of additive manufacturing, from design and materials to processes and production of high-value goods, including metallic, medical, and multifunctional components. Students will also take study tours in Europe and the USA to learn from leading research groups and businesses already using the technology daily. The problem is that current training focuses on rapid prototyping, not on manufacturing at scale. Without a skilled workforce, UK industry cannot adopt additive manufacturing for cost-effective low-volume production, complex geometries, or more efficient use of raw materials and energy. If this training succeeds, graduates will spread through industry as leaders, embedding additive manufacturing into company thinking. The result could be economic growth from high-value manufacturing in the UK, with societal benefits through wealth and employment—not from a single breakthrough, but from building the human expertise needed to make a disruptive technology routine.

View original technical description
Additive Manufacturing (AM) often known by the term three-dimensional printing (3DP) has been acknowledged as a potential manufacturing revolution. AM has many advantages over conventional manufacturing techniques; AM techniques manufacture through the addition of material - rather than traditional machining or moulding methods. AM negates the need for tooling, enabling cost-effective low-volume production in high-wage economies and the design & production of geometries that cannot be made by other means. In addition, the removal of tooling and the potential to grow components and products layer-by-layer means that we can produce more from less in terms of more efficient use of raw materials and energy or by making multifunctional components and products. The proposed Centre for Doctoral Training (CDT) in Additive Manufacturing and 3D Printing has the vision of training the next generation of leaders, scientists and engineers in this diverse and multi-disciplinary field. As AM is so new current training programmes are not aligned with the potential for manufacturing and generally concentrate on the teaching of Rapid Prototyping principles, and whilst this can be useful background knowledge, the skills and requirements of using this concept for manufacturing are very different. This CDT will be training cohorts of students in all of the basic aspects of AM, from design and materials through to processes and the implementation of these systems for manufacturing high value goods and services. The CDT will also offer specialist training on aspects at the forefront of AM research, for example metallic, medical and multi-functional AM considerations. This means that the cohorts graduating from the CDT will have the background knowledge to proliferate throughout industry and the specialist knowledge to become leaders in their fields, broadening out the reach and appeal of AM as a manufacturing technology and embedding this disruptive technology in company thinking. In order to give the cohorts the best view of AM, these students will be taken on study tours in Europe and the USA, the two main research powerhouses of AM, to learn from their international colleagues and see businesses that use AM on a daily basis. One of the aims of the CDT in AM is to educate and attract students from complementary basic science, whether this be chemistry, physics or biology. This is because AM is a fast moving area. The benefits of having a CDT in AM and coupling with students who have a more fundamental science base are essential to ensure innovation & timeliness to maintain the UK's leading position. AM is a disruptive technology to a number of industrial sectors, yet the CDTs industrial supporters, who represent a breadth of industrial end-users, welcome this disruption as the potential business benefits are significant. Growing on this industry foresight, the CDT will work in key markets with our supporters to ensure that AM is positioned to provide a real and lasting contribution & impact to UK manufacturing and provide economic stability and growth. This contribution will provide societal benefits to UK citizens through the generation of wealth and employment from high value manufacturing activities in the UK.

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Researchers

Adam Clare (Co-Investigator)Christopher Sutcliffe (Co-Investigator)Daniel Engstrom (Co-Investigator)Ian Ashcroft (Co-Investigator)Kenneth Dalgarno (Co-Investigator)Phill Dickens (Co-Investigator)Richard Hague (Co-Investigator)Ricky Wildman (Co-Investigator)Russell Harris (Co-Investigator)Ruth Goodridge (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

EPSRC Centre for Doctoral Training in Machining, Assembly, and Digital Engineering for Manufacturing (MADE4Manufacturing)
EPSRC Centre for Doctoral Training in 2D Materials of Tomorrow (2DMoT)
EPSRC Centre for Innovative Manufacturing in Additive Manufacturing
EPSRC Centre for Doctoral Training in Composites Science, Engineering and Manufacturing
EPSRC and SFI Centre for Doctoral Training in the Advanced Characterisation of Materials (CDT-ACM)

Original classification

Training Grant

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