Deutsch

IPG launches dual beam fiber laser for additive manufacturing applications

656
2024-11-25 12:00:10
Übersetzung anzeigen

Recently, American fiber laser giant IPG Photonics announced the launch of a new laser series specifically designed for the additive manufacturing field.
The highlight of this series of lasers lies in its integration of IPG's unique dual beam technology, which can independently regulate and simultaneously emit core and ring beams, setting a new benchmark in accuracy, efficiency, and reliability.


Based on its profound expertise in the field of high-power lasers, IPG has launched two new dual beam rack mounted lasers:
YLR-1000/3000-AMB series laser with 1kW core and 3kW ring combination;
YLR-2000/2000-AMB series laser with 2kW core and 2kW ring combination.
The all-new YLR-AMB series laser is specially designed for the additive manufacturing industry and has the following unique advantages:
Production efficiency leap: YLR-1000/3000-AMB laser has a construction rate of up to 324 cm ³/h and a density exceeding 99.9% in materials such as Ti-6Al-4V.


(Image source: IPG Photonics)

Multi functional processing capability: Combining single-mode and multi-mode outputs, the total power can reach 4 kilowatts, providing diverse processing options.
Heat distribution optimization: By independently adjusting the core and ring beams, more optimized heat distribution is achieved, promoting fast and high-quality construction.
Compact design: Adopting a slim 2U 19 inch (482.6mm) rack mounted design, it is not only easy to integrate, but also greatly saves space.
These innovative achievements have undergone rigorous testing by multiple top additive manufacturing OEM manufacturers, and preliminary results show excellent performance, significantly reduced costs, and greatly improved material utilization.


Trevor Ness, Senior Vice President of Global Sales and Business Development at IPG Photonics, emphasized that "YLR-AMB lasers have completely revolutionized the field of additive manufacturing. With high power, precise control, and application specific optimization, we help manufacturers reshape new standards for productivity and cost efficiency
The YLR-AMB series lasers perform well in high-performance applications such as aerospace components, medical equipment, and custom tools. Its key highlights include:
Material performance optimization: Specifically optimized for alloys such as Ti-6Al-4V (α - β titanium alloy) and CuCr1Zr (copper chromium zirconium).
Dynamic layer adjustment: Ensure the implementation of complex geometric shapes and perfect drape effects.


(Image source: IPG Photonics)

 


Source: Yangtze River Delta Laser Alliance

Ähnliche Empfehlungen
  • The United States promotes the development of next-generation EUV lithography technology

    LLNL has long been a pioneer in the development of EUV lithography technology.A laboratory located in California will lay the foundation for the next development of extreme ultraviolet (EUV) lithography technology. The project is led by Lawrence Livermore National Laboratory (LLNL) and aims to promote the next development of EUV lithography technology, centered around the laboratory's developed dr...

    01-06
    Übersetzung anzeigen
  • French research team successfully develops new orange laser

    A research team in France has reported a novel laser that emits light in the orange region of the spectrum, indicating its potential applications in flow cytometry and astronomical laser guidance.In the research results just published in Optics Express, the team (including researchers from the É cole Polytechnique in Caen, France and Oxxius, a laser manufacturer based in Lannion) claimed that the ...

    03-04
    Übersetzung anzeigen
  • Israeli startup has developed a new laser powder bed fusion technology (SLS)

    Starting company 3DM from Israel has developed a new laser powder bed fusion technology (SLS) and recently released its first product. It is reported that the new technology developed by this young company established in 2016 will open up the possibility of new materials.3DM quantum cascade laserThe quantum cascade laser (QCL) stands out in the competition of 3DM in the SLS field. QCL was develope...

    2023-10-27
    Übersetzung anzeigen
  • Scientists use glass to create femtosecond lasers

    Image source: Federal Institute of Technology in Lausanne, SwitzerlandScience and Technology Daily, Beijing, September 27th (Reporter Zhang Jiaxin) Commercial femtosecond lasers are manufactured by placing optical components and their mounting bases on a substrate, which requires strict alignment of optical components. So, is it possible to manufacture femtosecond lasers entirely from glas...

    2023-09-28
    Übersetzung anzeigen
  • New LiDAR can 'see' faces from hundreds of meters away

    At a distance of 325 meters, the human eye may only be able to distinguish between a person's head and body, making it difficult to discern any other differences. But a research team including Heriot Watt University in the UK and Massachusetts Institute of Technology in the US has developed a new type of LiDAR scanner that can perform detailed analysis of a person's face from such a distance and c...

    02-11
    Übersetzung anzeigen