RFP QuestBeta
OpenStage · tender 24 days to close

UK Fusion Energy Ltd

Palladium Silver Membranes Tensile and Fatigue Testing

Engineering & ArchitectureCPV 73100000
Value£165k
Deadline6 Aug 2026
Published9 Jul 2026
RegionNationwide
Timeline
Published 9 Jul 202624 days leftCloses 6 Aug 2026
Who to contact
Operational Procurement
operationalprocurement.step@ukifs.uk

The procurement contact named on the official notice.

Contract value in context
£165ktotal contract value
median £66k
this tender£0£561k

This is a large award for Research & Development — above three-quarters of comparable contracts. Based on 20,405 valued Research & Development tenders in our corpus.

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The brief

The scope of this procurement is to appoint a suitably qualified supplier to undertake a programme of mechanical testing on palladium-silver membrane assemblies to generate design data that supports their application in hydrogen purification systems for the STEP fuel cycle.

The supplier shall provide the specialist facilities, equipment, technical expertise, and personnel necessary to conduct slow strain rate tensile (SSRT) testing and strain-controlled fatigue testing under representative operating conditions.

Testing shall be carried out at elevated temperatures between 400 °C and 500 °C in gaseous hydrogen at pressures of up to 10 bar.

Where required, the supplier shall also undertake in-situ hydrogen permeation testing before and during mechanical loading to assess membrane performance under operational conditions.

The supplier shall be responsible for collecting, analysing, and reporting all test data, including the mechanical properties and performance characteristics of the membrane assemblies, and shall provide comprehensive test reports containing the test methodology, raw and processed data, analysis, observations, and conclusions suitable for engineering assessment and future design activities.

All testing shall be undertaken using appropriately equipped laboratory facilities capable of safely operating under elevated temperatures and pressurised hydrogen environments, in accordance with recognised industry standards or agreed test procedures, with appropriate quality assurance and full traceability throughout the programme.

The outputs from this procurement will provide STEP-relevant mechanical property data to support the development, qualification, and future deployment of palladium-silver membrane technology for hydrogen purification applications.

For more information about this opportunity, please visit the eSourcing portal at: https://ukfe.delta-esourcing.com/tenders/UK-UK-Abingdon:-Technical-testing%2C-analysis-and-consultancy-services./YM5VB3NDJJ To respond to this opportunity, please click here: https://ukfe.delta-esourcing.com/respond/YM5VB3NDJJ

Key requirements

What the supplier must deliver

01

The supplier shall provide the specialist facilities

The supplier shall provide the specialist facilities, equipment, technical expertise, and personnel necessary to conduct slow strain rate tensile (SSRT) testing and strain-controlled fatigue testing under representative operating conditions.

02

Testing shall be carried out at elevated

Testing shall be carried out at elevated temperatures between 400 °C and 500 °C in gaseous hydrogen at pressures of up to 10 bar.

03

Where required, the supplier shall also undertake

Where required, the supplier shall also undertake in-situ hydrogen permeation testing before and during mechanical loading to assess membrane performance under operational conditions.

04

The outputs from this procurement will provide

The outputs from this procurement will provide STEP-relevant mechanical property data to support the development, qualification, and future deployment of palladium-silver membrane technology for hydrogen purification applications.

Derived from the notice text — always confirm against the original documents.

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Source & provenance
OCID
ocds-h6vhtk-06c75a
Stage
tender · Open
Source
Find a Tender
Buyer ref
064633-2026
View the original notice on Find a Tender

Contains public sector information licensed under the Open Government Licence v3.0. Source data © Crown copyright.

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