Performance and fitness for use
Measuring how a material or solution performs against the use it is intended for, using criteria agreed in advance, so that the gap between where it stands and where it needs to be is known and can be tracked.
A measured baseline, so that progress is real and not a feeling.
Goals and criteria agreed before the work begins.
Options scored on explicit criteria, so that a choice can be explained.
A pilot first, then a review, and only then a wider rollout.
Results reviewed on a steady rhythm and fed back into the plan.
Measuring how a material or solution performs against the use it is intended for, using criteria agreed in advance, so that the gap between where it stands and where it needs to be is known and can be tracked.
Materials that embody their intended use. We start from what a material has to do, then characterise and test it against exactly that, so that its function is demonstrated and not only described.
We turn a claim into a question that can be tested, then design the programme that answers it: the samples, the controls, the replicates, and the criteria for success, agreed before the work starts.
Mechanical, thermal and structural property measurement, microstructural and image analysis, and test methods built around the way a material will be used. Where independent confirmation matters, we carry out the work together with academic partners.
Support in developing the processing route and the formulation that a result depends on, with the variables that matter identified, controlled and written down.
Characterising local feedstocks and sidestreams and measuring their variability, so that a material can be made from resources within reach, and so that what they can reliably deliver is known.
The energy a processing route consumes, measured and modelled step by step, so that the energy cost of a result is known and options can be compared on it.
Digital modelling, statistics and data analysis, used to understand a result and to say how far it can be trusted.
Processing history captured in enough detail for another laboratory to repeat the work. Uncertainty is reported honestly, including the part that comes from variation in the feedstock and not from the measurement.
How a material breaks down, separates or is recovered after use, designed in from the start, then tested and documented rather than assumed.
Preparing research funding proposals and the evidence base behind them. Our team has also assessed proposals for national funding bodies, so we know what a reviewer looks for.
Data about where a material comes from and how it was made, kept in a form that can travel with it, in line with emerging regulatory requirements for product data around the world, such as the EU Digital Product Passport.
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