Airplane at airport refueling

Steellogic Spa og Velvære

Revolutionizing aerospace performance with advanced materials engineering.

The Concept

In the aerospace industry, material innovation is key to unlocking higher efficiency and performance. When our client sought a solution to reduce aircraft weight while maintaining unmatched durability, Omnis stepped in to develop a custom titanium alloy composite that met the extreme demands of next-generation aviation.

By leveraging our expertise in advanced materials and precision manufacturing techniques, we successfully engineered a lightweight, high-strength solution that not only improved fuel efficiency but also enhanced the longevity of critical components.

Industry

Aerospace

Challenge

Reduce aircraft weight while maintaining extreme durability.

Material Used

Titanium alloy with advanced composite reinforcement.

Impact

18% weight reduction, improved fuel efficiency, and extended component lifespan.

airplate at airport at night

The Challenge

Aircraft manufacturers sought to reduce overall weight to improve fuel efficiency and aerodynamic performance, without compromising structural integrity and safety standards. Traditional materials lacked the strength-to-weight ratio required for next-generation aircraft designs.
Airplane turbine view at airport
Airplane wheel view at at airport

Our approach

Material Innovation

Development of a custom titanium alloy reinforced with carbon-fiber composites.

Advanced Manufacturing Process

Utilization of isostatic pressing and precision CNC machining to achieve complex geometries.

Testing & Validation

Extensive aerospace-grade stress testing for performance and durability validation.

High tech material
airplane wheel

The Results

18%

reduction in overall component weight.

Improved

aerodynamic efficiency and fuel economy.

Enhanced

resistance to heat and extreme pressure.

Extended

part lifespan by 35%.

Airplane view in the sky

The client

“Omnis' expertise in advanced materials completely transformed our production capabilities. Their lightweight solution allowed us to meet strict regulatory standards while optimizing performance.”

— Angela M., Lead Engineer, Aerospace Client

Airplane at garage

Technical specs

Material Composition:

Titanium-T6 Alloy + Carbon Fiber Composite

Manufacturing Process:

Hot Isostatic Pressing (HIP) & CNC Machining

ISO Certification:

AS9100 - Aerospace Quality Standard

More

Projects

computer component
Råvannstunnelen

Prosjekt fra tidligere virksomhet (Sateba Steel) med leveranse på 7 500 tonn prefab armering. Fokus på høy produksjonstakt og lastoverførende sveiser.

Military Chopper
Åsjord Salmon

Prosjektcase med planlagt leveranse i 2026. Oppgitt effekt: 30% besparelse gjennom optimaliserte prefab-løsninger.

Har du et krevende prosjekt?

la oss løse det

sammen.

Ta kontakt, så hjelper vi deg.
Person making a technichal drawn

Har du et krevende prosjekt?

la oss løse det

sammen.

Ta kontakt, så hjelper vi deg.
Person making a technichal drawn

Har du et krevende prosjekt?

la oss løse det

sammen.

Ta kontakt, så hjelper vi deg.
Person making a technichal drawn