Advanced materials for lighter, quieter, more efficient systemsStart a conversation

Technology platform

Advanced materials, engineered around performance.

Aerogel Core combines materials science with acoustic, thermal and application engineering to develop practical systems for demanding product environments.

Engineering approach

Designed around the outcome, not the material alone.

Every programme starts with a defined engineering objective. That may be thermal behaviour, acoustic response, mass reduction, geometry, manufacturability or integration with an existing component.

We then select, develop and evaluate the most appropriate material route, combining aerogel and graphene expertise with modelling, testing and prototyping.

Core capabilities

Three connected areas of expertise.

01 / AEROGEL MATERIALS

Lightweight material systems for insulation and acoustic control.

We develop bio-based and advanced aerogel systems for applications where low mass, insulation and acoustic behaviour matter.

Development is guided by the operating environment and the way the material must be integrated into a product or structure.

02 / GRAPHENE-BASED MATERIALS

Multifunctional materials for demanding environments.

Graphene-based routes provide a platform for engineering thermal behaviour, weight and wider functional performance.

We focus on practical development and evaluation rather than treating advanced material research as an isolated activity.

03 / ACOUSTIC ENGINEERING

Material response tuned to critical frequency ranges.

Our acoustic work connects material design, component behaviour and experimental testing to reduce unwanted noise or tune response.

This capability supports both new material development and targeted engineering questions within established product programmes.

Development process

A clear route from target to evidence.

  1. DefineAgree the performance target, constraints and evidence required.
  2. DevelopDesign the material system and integration route.
  3. PrototypeCreate representative samples or components.
  4. EvaluateTest, interpret and refine against the engineering objective.

Continue exploring

Connect the material to its application.

Start a conversation

Bring us the engineering challenge.

Tell us what the material, component or system needs to achieve. We will help identify the most useful next step.

Discuss a project