Structural Intelligence for composite structures that matter.

MatriQon engagements already span motorsport, renewable energy, aerospace, defence and human performance. The same Structural Intelligence platform applies wherever composite structures carry critical loads.

Explore all sectors

Developed against aerospace-grade standards.

MatriQon has been tested on aerospace-grade composites to ASTM D5528 and D7905, providing validated evidence of fracture-toughness performance in integrated composite configurations.

ASTM Tested

TESTED TO D5528 & D7905 STANDARDS

+244%

VALIDATED MODE II FRACTURE TOUGHNESS UPLIFT

Different environments. The same demand for earlier evidence and better decisions.

Aircraft wing with illuminated structural grid
Aviation & Aerospace

Aviation & Aerospace

The Cost of Silence:
Periodic inspection provides essential evidence of condition, but cannot continuously capture everything critical composite structures experience between inspections.
The Application:
Embed continuous sensing within critical composite structures to capture loads, strain, impacts and vibration throughout service.
The Outcome:
Detect structural change earlier, target inspection and maintenance more precisely, and reduce avoidable downtime while improving fleet availability.
What this unlocks
  • Earlier damage detection
  • Condition-led inspection and maintenance
  • Fewer unscheduled groundings
  • Greater fleet availability
Race car shown with structural mesh and pressure map
Motorsport

Motorsport

The Cost of Silence:
Much of a race car's composite structure operates without continuous structural measurement.
The Application:
Embed sensing across chassis and aerodynamic structures to reveal loads, downforce, strain, impacts and vibration in real operating conditions.
The Outcome:
Validate real-world loads, expose usable structural margin, optimise weight and identify fatigue or damage before it becomes race-ending.
What this unlocks
  • Real-world load evidence
  • Lighter, better-optimised structures
  • Earlier fatigue and damage detection
  • Evidence after every session
Wind turbine blade with live pressure map
Renewable Energy

Renewable Energy

The Cost of Silence:
Blade damage is a major source of wind-industry loss, while periodic inspection can leave developing structural change unseen between inspection intervals.
The Application:
Embed continuous sensing into turbine blades to monitor loads, strain, vibration and structural change throughout operation.
The Outcome:
Detect degradation earlier, target physical inspections, improve maintenance timing and reduce lost energy production.
What this unlocks
  • Earlier degradation detection
  • More targeted and safer inspection
  • Condition-based maintenance
  • Higher asset availability
Elite athlete with structural mesh and pressure mapping inside the shoe
Human Performance

Human Performance

The Cost of Silence:
Relying on subjective feel for equipment wear, leading directly to preventable biomechanical injury.
The Application:
A precision sub-40-micron sensory layer integrated into structural frames and performance insoles.
The Outcome:
Reveal load distribution and structural response to optimise equipment, inform biomechanics and identify patterns associated with overuse risk.
What this unlocks
  • Objective load and pressure distribution
  • Equipment and biomechanical insight
  • Earlier intervention
  • Better performance decisions
High-performance marine structure with pressure map
High-Performance Marine

High-Performance Marine

The Cost of Silence:
Advanced composite hulls and hydrofoils experience severe slamming loads, impacts and repeated load cycles that can drive hidden damage, delamination and fatigue.
The Application:
We embed the continuous intelligence layer directly into the laminate of hulls, bulkheads and foils, transforming passive composites into structures that continuously reveal loads, impacts, strain and dynamic response.
The Outcome:
Detect developing damage earlier, optimise structural weight and operating limits, and shift inspection and dry-docking towards condition-based maintenance.
What this unlocks
  • More time in water
  • Condition-led dry-docking
  • Confidence at the limit

What changes when the structure can sense.

See sooner

Bring hidden structural change into view.

Act earlier

Move before damage becomes disruption.

Carry less

Replace conservative assumptions with evidence.

Use longer

Unlock more confident asset-life decisions.

Cross-sector learning loop

The physics of structures is universal. What the MatriQon platform encounters in one extreme environment sharpens its predictive capabilities in the next. Across applications, evidence about loads, structural response, impacts and degradation strengthens the models used to interpret structural behaviour and condition.

Close-up of intelligent composite material
Built for consequenceThe same platform can be applied wherever composite structures carry critical loads and their performance, reliability or safety matters.

Wherever composite structures carry load.

MatriQon applies wherever composite structures carry critical loads: flight systems, energy assets, marine vessels, pressure vessels, robotics, medical devices and industrial equipment.

Defence systemsMarine vesselsHydrogen storageRoboticsCritical infrastructureIndustrial systemsRailSpace systems

What does the structure need to tell you?

Tell us where uncertainty is costing performance, uptime or confidence. We will help define the right first component and a credible path to validation.

Contact the team