Projects & Collaborations

A comprehensive display of collaboration and mutual respect with industry leading experts and academic facilities around the world.

COLDMELT

Continuous melting and atomisation of titanium alloys for near-net-shape AM processes for the aerospace industry via cold-crucible technology. In collaboration with BAE, Proxima and University of Greenwich with support from Airbus, Rolls-Royce and GKN Aerospace.

DEMAND-REPAIR

Exploration of novel advanced technologies and innovative titanium powders to repair next-gen aero-engine components in the field. Development of atomised titanium alloy powders with microstructures beneficial for HVAF and cold spray processes.

ALUMOTOR

UK-Alumotor is a transformative programme that will build a UK supply chain to deliver a high performance, e-machine at a reduced cost and volume in order to drive the electric revolution. This magnet free technology project is driven by RICARDO and Innovate.

PURECURE

Innovation project aiming to develop a UK-based manufacturing supply chain for waste copper and converting it into high purity 99.99% copper powder feedstock for high value applications, such as civil nuclear and fusion energy components.

SPICE

To establish an effective, repeatable and scalable carbon-coating process for next-gen silicon anodes materials that will improve the current performance of lithium-Ion batteries, and hence accelerate the adoption of Nexeon anode materials by cell manufacturers.

ENGPOW

In this project, the UK has the chance to establish a global lead in engineered powders for cold spray. With InnovateUK investment, PSI Ltd will take advantage of its 30 years’ experience in powders to position itself as a global supplier of advanced cold spray powders.

TIPOW

TiPOW is an initiative by a consortium of leading UK companies proposing to define the requirements and develop the processing techniques to provide high quality Titanium powder; enabling the production of aerospace components via 3D printing or AM.

HILO SILVER

This project will investigate the prospect of commercialising silver alloys as cost-effective and low silver alternatives to front-side pure silver paste in solar cells whilst maintaining the key properties of low resistivity, oxidation resistance and solderability.

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