한국어

Two Enterprises Collaborate to Overcome Optical Pollution in Vacuum Laser Welding

527
2024-02-03 10:38:25
번역 보기

Cambridge Vacuum Engineering (CVE), a precision welding equipment company in the UK, and Cranfield University recently announced that they have successfully reached a Knowledge Transfer Partnership (KTP), which will provide global engineers with more welding options.

In this cooperation, both parties jointly solved the optical pollution problem in vacuum laser welding, paving the way for the comprehensive industrial application of this technology.

This achievement will not only bring practical benefits to companies seeking deeper penetration welding, but also significantly improve welding quality, reduce oxidation problems, and minimize the time required for cleaning parts after welding.

According to CVE, vacuum laser welding, as a relatively new connection technology, has a welding depth 2-3 times that of traditional laser welding methods. However, the issue of optical pollution has always hindered the widespread application of this technology in industry.

The optical protection system of CVE ensures that the cleanliness of welded components is comparable to that of electron beam welding, while also ensuring a longer lifespan of the laser coupling window. Low cost consumable window, continuously welded at low power (3kW) for up to 3 hours without significant weld degradation.

In the past two years, with funding support from the UK Innovation UK, teams from CVE and Cranfield University have jointly established testing systems, conducted in-depth research on various aspects of vacuum laser technology, and experimented with various concepts and solutions. The experimental data of these systems were used to develop an optical protection system that can operate at extremely low levels of particle generation.

Currently, CVE is working on manufacturing vacuum laser welding machines using this technology. The company stated that its optical protection system ensures the cleanliness of welded components comparable to electron beam welding. This breakthrough technological advancement will provide global engineers with more welding options and inject new vitality into innovation and development in the industrial manufacturing field.

Source: OFweek Laser Network

관련 추천
  • Advanced optical giant Schott announces completion of Malaysia factory

    Recently, German optical giant SCHOTT is pleased to announce that its advanced production plant located in Gulim, Kedah, Malaysia has been successfully completed. This milestone event was celebrated with the joint witness of employees, clients, and representatives from the Malaysian Investment Development Authority (MIDA).The completion of the new factory marks a significant increase in Schott's...

    2024-10-16
    번역 보기
  • Teledyne Technologies acquires a portion of its optoelectronic business

    Recently, Teledyne Technologies announced that it has reached an agreement to acquire a portion of Excelitas Technologies' aerospace and defense electronics business for $710 million in cash.This acquisition includes the optical systems business under the Qioptiq brand headquartered in North Wales, UK, as well as the Advanced Electronic Systems (AES) business headquartered in the United States.It ...

    2024-11-12
    번역 보기
  • GE Additive has been renamed Colibrium Additive, continuing to lead the additive manufacturing industry

    In April 2024, GE Additive was renamed Colibrium Additive. Colibrium Additive (formerly GE Additive) is a subsidiary of GE Aerospace Propulsion and Additive Technology (PAT) and was established at the end of 2016. Nowadays, it is a trusted partner and manufacturer of industrial metal 3D printers and metal powders, as well as a service provider for industrial metal 3D printers and metal powders. It...

    2024-04-30
    번역 보기
  • 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
    번역 보기
  • Creating Laser Sensors with Soap Bubbles: Discovery of Game Changing Rules

    Scientists from the University of Ljubljana in Slovenia have made groundbreaking discoveries and discovered a new innovative application of soap bubbles. By transforming these seemingly simple entities into laser sensors, they unleash the potential to detect electric fields and pressures. This extraordinary development has opened the door to various possibilities.Researchers at the University of L...

    2023-11-20
    번역 보기