Italiano

The UK government plans £ 10.5 million to support laser wire feeding

614
2025-06-23 10:46:00
Vedi traduzione

On the first day of the 2025 Paris Air Show, the UK government announced a £ 250 million investment to support sustainable aerospace programs, with £ 48.5 million earmarked for funding additive manufacturing projects led by Airbus and GKN Aerospace. Among them, £ 10.5 million will be injected into the GKN Integrated System Level Aerospace Structure Assembly (ISLAA) program, with the aim of utilizing Laser Wire Feed Additive Manufacturing (WLAM) technology to advance large-scale aerospace production.

It is reported that GKN Aviation will use funds to promote the application of laser wire feeding additive manufacturing technology in aircraft structural integration, and simultaneously announce a new cooperation with electric vertical takeoff and landing (eVTOL) manufacturer Archer Aviation to provide key fuselage components and low-voltage electrical interconnection systems for its Midnight air taxi.


Parts printed using GKN's laser wire feeding additive technology


Application of GKN's WLAM technology in the manufacturing of large aerospace components
Laser wire feeding additive manufacturing technology (WLAM) is a 3D printing process that uses laser melting of metal wire materials layer by layer to form. It has advantages such as high material utilization, fast deposition rate, no dust pollution, support for multiple materials, and large-scale manufacturing. For many years, GKN Aerospace has been at the forefront of the application of laser wire feeding additive manufacturing technology, committed to applying this technology to the manufacturing of large aerospace components.

1. Announce the delivery of the 200th additive manufactured fan housing installation ring
GKN Aviation announced the delivery of the 200th additive manufactured fan housing mounting ring. GKN began using laser wire feeding additive technology to produce large fan casing installation rings in 2024, and completed the production of its 100th piece in November of the same year. The acceleration of production speed reflects the operational efficiency of laser wire feeding additive manufacturing, which can meet the demanding requirements of modern aviation and produce lightweight, sturdy, and highly optimized components.

 



2. GKN uses laser wire feeding additive technology to assist aerospace manufacturing
GKN Airlines uses laser wire feeding additive technology to manufacture cutting-edge components, which have been applied to the world's leading aviation engines and have begun mass production, achieving a 40% reduction in component manufacturing emissions, a 40% reduction in raw material losses, an 80% reduction in delivery cycles, and promoting global capacity upgrades.

3. GKN collaborates with renowned aircraft manufacturers to produce large titanium alloy aviation structural components
GKN Airlines has partnered with aircraft manufacturer Northrop Grumman to use laser wire feeding additive manufacturing technology to manufacture a titanium metal aerospace structural component with a size of approximately 2.5 meters using about 45 kilograms of titanium. It is said to be the largest additive manufacturing aerospace structural component produced by GKN Aerospace.

Source: Yangtze River Delta G60 Laser Alliance

Raccomandazioni correlate
  • Shanghai Photonics Corporation has made progress in laser welding of structural materials (Ni-28W-6Cr alloy) for new-generation molten salt reactors

    Recently, Yang Shanglu, a researcher at the Laser Intelligent Manufacturing Technology Research and Development Center of Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made new progress in laser welding of the fourth-generation reactor-molten salt reactor structural material Ni-28W-6Cr nickel-based superalloy.The research team applied the high power fiber ...

    2023-08-25
    Vedi traduzione
  • Personnel changes at Optimax, a precision optical manufacturer

    On November 25th, Optimax, the largest precision optics manufacturer in the United States, announced the appointment of Joseph Spilman as CEO and Pete Kupinski as President. After developing a comprehensive succession plan, Optimax CEO Rick Plympton will retire along with President and Founder Mike Mandina.Mandina stepped down in 2021 and passed on the title of CEO to Spilman, strategically appo...

    2024-11-28
    Vedi traduzione
  • Alliance unit Radiant High Tech Blue Purple Laser Assists in Ocean Exploration

    The ocean covers over 71% of the Earth's surface, and so far humans have only explored about 5% of the ocean. This means that there are still 95% of the depths of the ocean that we know nothing about, making it the most mysterious and unknown place on our planet.600 years ago, Zheng He led a fleet to play the prelude to the era of great navigation, laying the foundation for us to understand the wo...

    2023-11-06
    Vedi traduzione
  • SPIE Optics and Photonics 2025: Plenary Session Evaluation of Organic Materials for Optoelectronics

    The use of organic materials in photonics has given rise to many device innovations for applications in sensing, semiconductors, lasers, and more. The Organic Photonics + Electronics plenary session at SPIE Optics + Photonics 2025, taking place through 7 August in San Diego, California, sampled some current research efforts in this subfield, and looked at developments on the horizon.Ruth Shinar d...

    08-06
    Vedi traduzione
  • Sivers will develop laser arrays for artificial intelligence and deliver prototypes in 2024

    Sivers Optics, a subsidiary of Sivers Semiconductors, has signed a product development agreement with an undisclosed company.Starting from the initial contract worth $1.3 million, the prototype will be delivered in 2024, and it is expected that the agreement will grow rapidly in 2025 before transitioning to mass production. After entering full production, customers expect the annual chip productio...

    2024-03-18
    Vedi traduzione