简体中文

43 seconds! Completion of laser welding of a new energy vehicle body

377
2025-03-11 16:13:26
查看翻译

March 8, in the three sessions of the 14th National People's Congress, the second “representative channel” focused on interviews, the National People's Congress, the party secretary of HGTECH Science and Technology, Chairman of the Board of Directors Ma Xinqiang, said in response to a reporter's question, in order to crack the “strangle  “technical problems, HGTECH over the years in the field of high-end laser equipment to catch up.


“20 years ago, China's high-end laser processing equipment basically rely on foreign imports, even the screws used for laser reinforcement, have to spend $ 3 a to buy from abroad. It is because of this screw woke me up, must take the road of self-improvement struggle.” Ma Xinqiang said.

Ma Xinqiang introduced, HGTECH in the development of successful automotive body-in-white laser welding equipment, a breakthrough in foreign technology monopoly for nearly 40 years, forcing the price of foreign products fell by more than 40%. “Now we use 43 seconds, we can complete a new energy vehicle body laser welding, which is the fastest speed in the industry, at present we have more than 90% of the domestic market share of this product, service more than 45 million vehicles off the line.” At the same time, HGTECH has also developed more than 100 sets of laser equipment to serve the automotive industry chain of auto parts production of thousands of kinds, which strongly support China's new energy vehicles to the world.

相关推荐
  • Redefining optical limits: Engineers discover enhanced nonlinear optical properties in 2D materials

    Recently, according to a paper published in Nature Communications titled "Phonoenhanced nonlinearities in hexagonal boron nitride," engineers from Columbia University collaborated with theoretical experts from the Max Planck Institute of Material Structure and Dynamics to discover that pairing lasers with lattice vibrations can improve the nonlinear optical properties of layered two-dimensional ma...

    2024-02-23
    查看翻译
  • Luxium Solutions completes strategic acquisition of Inrad Optics, a leading optical materials company

    Recently, Luxium Solutions, a high-performance crystal material supplier, announced the successful completion of its strategic acquisition of Inrad Optics, a leading optical materials company. This milestone transaction not only greatly enriches Luxium's innovative product matrix, but also injects valuable resources, operational wisdom, and capital drive into Inrad Optics. Both parties will work t...

    2024-07-20
    查看翻译
  • Scientists develop high-power fiber lasers to power nanosatellites

    The use of lasers in space is a reality. Although radio waves have been the backbone of space communication for many years, the demand for faster transmission of more data has made these lighter, more flexible, and safer infrared rays the future of space communication.Recently, WipThermal is a European project dedicated to developing groundbreaking solutions for wireless energy transmission in the...

    2024-01-18
    查看翻译
  • BWT 969nm semiconductor pump source

    Semiconductor laser pump sources, especially those with a wavelength of 969nm, have become the preferred choice for high-power/high peak energy disc lasers due to their reduced quantum losses and heat generation.The 3000W 969nm fiber coupled semiconductor laser system launched by BWT uses 800 μ m NA0.22 fiber to output flat top optical energy distribution, combining lightweight and excellent optic...

    05-09
    查看翻译
  • Observation of laser power changes in ultrafast protein dynamics

    When researchers at the Max Planck Institute of Medicine conducted their first ultrafast X-ray crystallographic experiment on myoglobin in 2015, they were not aware that they had conducted the wrong experiment. By increasing the power of X-ray free electron lasers to ensure usable diffraction patterns, lead researcher Ilme Schlichting said that they "suddenly entered the wrong [excited] state with...

    2024-02-28
    查看翻译