한국어

GOLDEN laser die-cutting machine will be exhibited at UPAKEXPO 2024

457
2024-01-12 14:07:34
번역 보기

At the UpakExpo 2024 exhibition to be held in Moscow at the end of January, Chinese company Golden Laser will showcase for the first time two laser die-cutting machines focused on the printing, labeling, and packaging markets in Russia.

The Golden Laser LC350 is a web machine designed to handle labels printed on digital and flexographic printing machines. It can cut, die cut, and kiss cut paper, plastic film, foil, composite materials, woven and non-woven materials, including transparent and reflective materials. The 350 millimeter wide model will be displayed on the booth, but the manufacturer also produces versions that allow you to use smaller and wider rolls.

The Golden Laser LC5035 is a B3 single sheet printer. It is suitable for small-scale production of die-cutting and slotting stickers, stickers, boxes, and components carved from various types and compositions of boards. The format of the exhibition copy is 80x60 centimeters, but other formats can be provided.

The Golden Laser equipment is designed specifically for the production of printing and packaging products and is represented by NISSA Centrum in Russia. Their experts will work at the Golden Laser booth. After the exhibition, the gold laser LC350 roll laser die-cutting machine will be relocated to the NISSA Centrum demonstration center in Moscow.

UpakExpo 2024 will be held from January 23rd to 26th at Exhibition Hall 8 of Expocentre Fairgrounds.

Source: Laser Net

관련 추천
  • New and Strongest Laser Born in the United States

    The ZEUS laser at the University of Michigan recently achieved a breakthrough of doubling the peak power of the strongest laser in the United States through its first 2 quadrillion watt experiment. Although this instantaneous power only lasts for 25 attosecond (one billionth of a second), it exceeds the total power of the global power grid by more than a hundred times.Karl Krushelnick, director of...

    05-28
    번역 보기
  • Mechanism of Time Power Modulation Increasing Weld Depth in High Power Laser Welding

    Researchers from the Hanover Laser Center and Leibniz University in Germany reported on the mechanism of increased welding depth during time power modulation in high-power laser beam welding. The related paper titled "Mechanisms of Increasing Welding Depth during Temporary Power Modulation in High Power Laser Beam Welding" was published in Advanced Engineering Materials.Understanding the basic mec...

    2024-12-18
    번역 보기
  • Synchrotron X-ray imaging technology

    According to a recent study published in the journal Science Advances, it reveals how early mammals grew and developed during critical periods of their long 'life history'. A research team including Queen Mary University of London used synchrotron X-ray tomography technology to image the growth rings in fossilized tooth roots, in order to infer the lifespan, growth rate, and even sexual maturity t...

    2024-08-15
    번역 보기
  • The Linac Coherent Light Source II X-ray Laser in the United States has completed over a decade of upgrading and emitted the first X-ray with a record breaking brightness

    According to reports, the Linac Coherent Light Source II (LCLS-II) X-ray laser at the Stanford SLAC National Accelerator Laboratory in the United States has just completed an upgrade that took more than a decade. After a facelift, it has become the world's brightest X-ray facility and emitted the first record breaking X-ray, allowing researchers to record the behavior of atoms and molecules in bio...

    2023-09-20
    번역 보기
  • Overview of ultrafast laser micro nano manufacturing technology: material processing, surface/interface control, and device manufacturing

    Researchers from Tsinghua University have summarized the research on ultrafast laser micro nano manufacturing technology, including material processing, surface/interface control, and device manufacturing. The relevant review titled "A Review of Ultrafast Laser Micro/Nano Fabric: Material Processing, Surface/Interface Control, and Device Fabric" was published in Nano Research.Ultra fast laser proc...

    2024-08-06
    번역 보기