한국어

Germany has developed a fast, accurate, and wear-resistant laser drilling CFRP process

578
2024-03-06 14:02:22
번역 보기

Recently, scientists from the Hanover Laser Center (LZH) in Germany announced the successful development of an automated laser drilling process that can promote the processing of carbon fiber reinforced plastics (CFRP). They stated that this is particularly valuable in applications such as lightweight structures and sound insulation.

Composite materials such as carbon fiber reinforced plastics (CFRP) are excellent in lightweight structures and are also used in automotive and aircraft structures, among others. In order to simplify the processing of CFRP and sandwich materials, LZH scientists, together with Invent and KMS technology centers, have developed an innovative process with relevant system settings.

In this process, the laser beam is divided into parts by specially designed diffractive optical elements, causing it to hit multiple positions on the material and generate multiple holes simultaneously.

In an ideal scenario, this can be achieved with up to 25 partial beams of light, reducing the drilling time to 25 times the original time, with each hole lasting less than one tenth of a second, which traditional methods cannot achieve, even for larger holes.

Through this process, scientists are able to create holes with a diameter of only 1.2-0.25mm. This makes them smaller than the holes currently achieved using traditional mechanical methods in sandwich and CFRP materials. The optical mechanical device manufactured by KMS technology center can achieve high flexibility in aperture and mode without the need for tool replacement.

Laser micro drills are also very interesting in the aviation field. For example, in order to reduce aircraft noise emissions, the engine uses sound-absorbing cladding components. This type of component is usually made of CFRP or CFRP sandwich material, and then provides many small holes on a large area.

Laser micro drilling is suitable for acoustic drilling because it is non-contact and therefore has no pressure or wear. This eliminates high costs caused by drill bit wear and quality issues caused by dull drilling. In acoustic testing, project partner Invent evaluated the sound insulation performance of laser drilling sandwich panels as "very good".

The above project is called "Microdrilling of Sandwich Materials: Development of Laser Technology" (miBoS), funded by the Federal Ministry of Economy and Climate Protection of Germany.

Source: OFweek

관련 추천
  • Micro ring resonators with enormous potential: hybrid devices significantly improve laser technology

    The team from the Photonic Systems Laboratory at the Federal Institute of Technology in Lausanne has developed a chip level laser source that can improve the performance of semiconductor lasers while generating shorter wavelengths.This groundbreaking work, led by Professor Camille Br è s and postdoctoral researcher Marco Clementi from the Federal Institute of Technology in Lausanne, represe...

    2023-12-11
    번역 보기
  • The scientific research team has proposed a modeless Raman fiber laser using a traditional resonant cavity structure

    The pump source, gain material, and resonant cavity are the three elements that make up a laser. Due to the selective effect of the resonant cavity on the lasing frequency, multi longitudinal mode operation is one of the characteristics of fiber lasers based on traditional resonant cavity structures, manifested as periodic beat peaks in the radio frequency (RF) spectrum and periodic fluctuations i...

    2023-08-15
    번역 보기
  • 330 million US dollars! This laser ophthalmic treatment developer has been acquired

    Recently, according to a report submitted by BioLight to the Tel Aviv Stock Exchange, Swiss American pharmaceutical and medical device giant Alcon Pharmaceuticals is acquiring Israeli medical technology company Belkin Vision.It is reported that BioLight will sell its 4% stake in Belkin Vision, which may be worth up to $330 million based on the milestones established in the transaction.Belkin Visio...

    2024-05-06
    번역 보기
  • Overview of Ultra Short Pulse Laser Processing of Wide Bandgap Semiconductor Materials

    Professor Zhang Peilei's team from Shanghai University of Engineering and Technology, in collaboration with the research team from Warwick University and Autuch (Shanghai) Laser Technology Co., Ltd., published a review paper titled "A review of ultra shot pulse laser micromachining of wide bandgap semiconductor materials: SiC and GaN" in the international journal Materials Science in Semiconductor...

    2024-07-30
    번역 보기
  • EOS and AMCM will open a new UK Additive Manufacturing Excellence Center

    The University of Wolverhampton (UK), along with global 3D printing leaders EOS and AMCM, will collaborate to establish a new Centre of Excellence (AM) for Additive Manufacturing in the UK. This partnership will provide cutting-edge technology from EOS and AMCM, and focus on developing advanced materials and processes for high demand applications in industries such as aerospace, automotive, aerosp...

    2024-04-15
    번역 보기