MATERIALS INTELLIGENCE FOR CRITICAL SYSTEMS.

Understand failure.
Engineer what comes next.

Understand failure.
Engineer what comes next.

Failure analysis and materials intelligence for critical systems. From evidence to engineering decisions.

REAL MATERIALS.
REAL PROBLEMS.
DEEPER INSIGHTS.
BETTER DECISIONS..

MATERIALS INTELLIGENCE FOR CRITICAL SYSTEMS.

Understand failure.
Engineer what comes next.

Failure analysis and materials intelligence for critical systems. From evidence to engineering decisions.

REAL MATERIALS.
REAL PROBLEMS.
DEEPER INSIGHTS.
BETTER DECISIONS..

MATERIALS INTELLIGENCE FOR CRITICAL SYSTEMS.

Understand failure.
Engineer what comes next.

Failure analysis and materials intelligence for critical systems. From evidence to engineering decisions.

REAL MATERIALS.
REAL PROBLEMS.
DEEPER INSIGHTS.
BETTER DECISIONS..

FROM A PROBLEM

TO A DECISION.

We turn complex materials problems into clear answers that support engineering, operational and investment decisions.

FAILURE

FAILURE

A real-world problem.

EVIDENCE

EVIDENCE

Data across scales.

MECHANISM

MECHANISM

Why it happened.

DESIGN

DESIGN

Actionable technical insight.

FAILURE ANALYSIS

Why did it fail?

Advanced microscopy, metallography and materials testing to identify failure mechanisms and root causes.


  • Fractography and microstructure analysis

  • Weld and manufacturing defects

  • Fatigue, fracture, corrosion, embrittlement

  • Independent technical investigations


DEGRADATION ASSESSMENT

What is happening to the material?

Engineering assessment of degradation mechanisms and material performance under real service conditions.


  • Environment-assisted degradation

  • Hydrogen effects and embrittlement

  • Highflow temperature behaviour

  • Process-structure-property relationships

PREDICTIVE INTEGRITY

What is likely to happen next?

Physics-informed modelling and data analytics to predict material behaviour and support critical decisions.


  • Fracture mechanics and crack growth

  • Degradation and remaining life

  • Uncertainty-informed prediction

  • Decision support for inspection/mitigation

POWERED BY PROBE™

A Physics-informed Copilot for Failure Analysis

PROBE™ brings materials evidence, engineering physics and AI together to help investigate why components fail - and determine what evidence to examine next.


PROBE is currently in development, with initial validation using open materials data and published failure cases.

Mountain and water landscape

INDUSTRIES WE SUPPORT

Different environments. Same critical requirement. Reliable materials. Safer operations.

Energy & Pipelines

Defence & Arctic

Nuclear

Steel & Heavy Manufacturing

Aerospace