繁体中文

Laser Photonics cleaning technology simplifies the removal of biofilms in industrial environments

111
2023-09-20 14:41:43
查看翻譯

Laser Photonics Corporation is a leading global industrial developer of CleanTech laser systems for laser cleaning and other material applications, highlighting a key application of its CleanTech laser system.

Wayne Tupuola, CEO of Laser Photonics, commented, "Our CleanTech laser cleaning system provides an efficient and cost-effective method for removing biofilms from various materials and surfaces.

When microorganisms adhere to the surface of an object by secreting viscous gelatinous substances, they form a biofilm in a humid environment. Biofilm can be formed on water treatment system components, food processing plant machinery, medical equipment, and ship hulls. CleanTech laser cleaning allows you to quickly evaporate biofilm on almost any surface through a non-contact, environmentally friendly program that is safe and easy to use for operators.

CleanTech laser sandblasting technology
The CleanTech laser sandblasting technology manufactured by Laser Photonics is environmentally friendly, cost-effective, and time-saving. Applications include rust removal, paint removal, surface treatment, etc. This technology is an excellent alternative to traditional cleaning methods such as sandblasting, dry ice blasting, and other sandblasting techniques.

Source: Laser Network

相關推薦
  • Real time measurement of femtosecond dynamics of relativistic intense laser driven ultra-hot electron beams

    In the interaction between ultra short and ultra strong lasers and matter, short pulse width and high energy electrons are generated, commonly referred to as "hot electrons". The generation and transport of hot electrons is one of the important fundamental issues in high-energy density physics of lasers. Superhot electrons can excite ultrafast electromagnetic radiation in a wide range of wavelengt...

    2024-06-21
    查看翻譯
  • Coherent Company Launches Industry's First 1200 mW Pumped Laser Module for Optical Amplification in DWDM Networks

    Coherent Corporation, the leader in erbium-doped fiber amplifier pumped laser technology for deployment in optical networks, announced today the launch of the industry's first pumped laser module in a 10 pin butterfly package with an output power of 1200 mW.The rapid development of optical communication technology is reaching the theoretical limit of fiber capacity and driving the expansion of tr...

    2023-09-22
    查看翻譯
  • Purchase Atomstack S20 Max 657W laser engraving machine from CAFAGO for 20 euros

    Want to unleash your creativity with cutting-edge laser engraving machines? The new Atomstack S20 Max 20W laser engraving machine is your perfect choice! With a series of groundbreaking features and larger creative space, this machine's beast will completely change your laser carving experience.Farewell to restrictions! The Atomstack S20 Max has a wide working area of 850 * 400mm, and can easily m...

    2023-11-11
    查看翻譯
  • IPG Japan office and technical center officially opened

    Recently, IPG Photonics, a leading company in the global fiber laser field, announced the official opening of its new office and central technology center in Japan, marking a solid step in the technology giant's strategic deployment in the Asia Pacific region.The opening of this new office not only demonstrates IPG Photonics' high regard for Japan and the entire Asia Pacific market, but also indic...

    2024-07-15
    查看翻譯
  • Xi'an Institute of Optics and Fine Mechanics has made new progress in the research of attosecond high spatiotemporal resolution imaging

    The attosecond light source has the characteristics of ultra short pulse width, short wavelength, high coherence, and high-precision synchronous control, and has extremely high potential for application in the field of ultrafast imaging. Especially when the attosecond light source reaches the "water window" band, oxygen and hydrogen atoms have weak absorption of X-rays in this band, so water is re...

    2024-10-14
    查看翻譯