Completed Materials & Manufacturing Engineering

The Protocol Programme: Advanced Ground operations through Landing Gear Enhancements and The Corrosion Resistant Steel Project (AGILE-CREST)

In plain English

AI plain-English summary

Aircraft landing gear currently requires a costly overhaul every 10 years, driven largely by corrosion. This project aims to replace conventional landing gear materials with new high-strength stainless steels that resist rust and wear far longer. The problem is economic. Corrosion accounts for roughly one third of the total overhaul repair bill for landing gear, and it is the main reason components must be stripped down and refurbished every decade. These overhauls cause flight delays, cancellations, and significant operational costs for airlines. The project brings together a landing gear manufacturer, a steel producer, and an advanced manufacturing research centre to test whether new corrosion-resistant alloys can withstand the extreme forces and environmental exposure of take-off and landing. If successful, the impact is straightforward: extending the time between overhauls from 10 to 14 years would cut the cost of owning and operating landing gear by about $10 per flight hour per aircraft. That saving comes from fewer maintenance interruptions, fewer spare parts, and less aircraft downtime. For a large fleet, the cumulative reduction in operational cost is substantial, and the improved reliability means fewer last-minute cancellations for passengers.

View original technical description
This project will apply new high strength stainless steel materials to the challenging Landing Gear environment with the key objective to minimise corrosion related maintenance and enable greatly extended Time between overhaul (TBO). Landing Gear is today a significant contributor to the operational cost of the management of an Aircraft fleet. Corrosion contributes to operational interrupts leading to delays and cancellations of Aircraft. Airlines have confirmed that overhaul cost, largely driven by corrosion, is one of the major contributors to the maintenance cost of Landing Gear. Corrosion has been identified as the key factor limiting TBO to 10 years on current aircraft programs and also around one third of the overhaul repair bill. Studies have shown that increasing the TBO from 10 to 14 years would reduce Landing Gear cost of ownership by around 10$/FH per aircraft. The project is collaboration with Messier-Dowty Ltd for landing gear design material requirements, Carpenter Technology Corp for corrosion resistant steels and the AMRC in Sheffield for advanced manufacturing and test capability. Airbus will be responsible for performance Requirements, Integration, Certification and test requirements aspects of the Technology.

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Original classification

BEIS-Funded Programmes

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