Français

Trumpf laser uses artificial intelligence technology to improve welding quality

461
2025-07-11 10:34:21
Voir la traduction

At last month’s LASER World of Photonics exhibition in Munich, Germany, industrial solutions and laser giant Trumpf presented a new materials processing laser system solution specified to improve welding processes.

The system combines several sensors that monitor all process steps during laser welding. An integrated AI quality control system checks the weld seams, for example, and OCT (optical coherence tomography) monitors the welding depth of the laser.


Solution for laser welding


Martin Stambke, Product Manager, explained, “Our solution is unique on the market. We are offering all components, such as the beam source, sensors, and optics, from a single source. We also take care of installation, service, and programming of the system, which is tailored to a user.”

The new solution enables users to weld precision components that must be free of defects, such as batteries for electric cars or hairpins for electric motors. To ensure flawless weld seams, the user must set the optimum working distance between the various components and the laser. This is enabled by the programmable PFO 33 focusing optics, which can adjust the focus position of the laser independently.

‘2.5D mode’
“This so-called 2.5D mode is more cost-effective in many applications than 3D mode, in which the PFO can still move up and down during the welding process. This is because less complex controls and programming, as well as fewer moving axes, reduce acquisition, operating, and maintenance costs for the user,” said Stambke.

“In addition, it is faster for the optics to adjust the focus position themselves than to move the entire optics up and down in the laser cell. Our solution is therefore cost-efficient, yet powerful,” he said.

Better weld seam quality from the very first component With integrated optical coherence tomography (OCT), users can not only monitor the welding depth of the laser, but also check the distance between the laser and the component.

“This ensures the focus position of the laser and prevents welding errors,” said Stambke. “Moreover, VisionLine Inspect is used to check the quality of the manufactured components. A camera takes a picture of the weld seam and the system uses AI to detect any potential errors. By combining AI preprocessing and conventional algorithms, we are creating traceability and transparency.”

Source: optics.org

Recommandations associées
  • Zhejiang University has prepared ultra strong and tough 3D printing elastic materials

    Professor Xie Tao and researcher Wu Jingjun from the School of Chemical Engineering and Biotechnology at Zhejiang University have designed a new type of photosensitive resin and used it to create a "super rubber band" that can stretch to over 9 times its own length and lift 10 kilograms of objects with a "body" with a diameter of 1 millimeter through 3D printing. The relevant results were recently...

    2024-07-06
    Voir la traduction
  • Lameditech of South Korea was listed on the KOSDAQ exchange on the 17th

    On June 11, 2024, Korean laser medical equipment manufacturer Lameditech successfully completed its initial public offering and was listed on the KOSDAQ exchange on the 17th.Last month, its public offering price was fixed at 16000 Korean won. In this public offering, Lameditech issued a total of 1298000 shares, raising approximately 20.8 billion Korean won. Since Lameditech's debut on KOSDAQ, as o...

    2024-06-26
    Voir la traduction
  • American FMCW LiDAR listed company Aeva receives $50 million investment

    Recently, American FMCW LiDAR listed company Aeva announced a strategic partnership with a technology subsidiary of a Fortune Global 500 company to jointly introduce Aeva's fourth generation 4D LiDAR into emerging industrial and consumer markets.According to the agreement, the tech giant will provide a strategic investment of approximately $50 million to Aeva through subscription of Aeva common st...

    05-22
    Voir la traduction
  • Progress has been made in the research of phase modulation of terahertz programmable metasurfaces based on free carrier plasmonic dispersion effect

    Recently, the team of Situ Guohai and Guo Jinying from the Aerospace Laser Technology and Systems Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, and the School of Microelectronics at Shanghai University collaborated to propose a terahertz phase controlled programmable metasurface design scheme based on free carrier plasma dispersion effect. The rela...

    2024-07-26
    Voir la traduction
  • 253 million US dollars! This Canadian medical fiber optic sensor manufacturer will be acquired

    Recently, Haemantics Corporation, which focuses on providing innovative medical solutions with proprietary optical technology, announced that the company has reached a final agreement. According to the agreement, Haemonics will acquire all outstanding shares of Canadian fiber optic sensor manufacturer OpSens for CAD 2.90 per share.This is an all cash transaction with a fully diluted equity value o...

    2023-10-18
    Voir la traduction