Deutsch

DataLase launches a new laser active transparent to white coating

255
2024-03-09 14:31:49
Übersetzung anzeigen

Laser coding and marking technology expert DataLase has launched a series of new colorless to white coatings for a range of packaging applications.

These coatings are centered around biodegradable and sustainably sourced raw materials, providing high contrast white printing even on difficult substrates such as 12 micron PET and shrink film, under the weight of flexographic and gravure coatings. This series includes transfer printing coatings for directly marking the shape of objects, such as bottles and bottle caps.

This multifunctional coating can also be used for folding paper boxes, flexible films, foils, small bags, and labels. High opacity, clear laser printing quality, and QR code readability can be achieved on a range of lasers, providing CO2, fiber, and UV lasers.

Compared to laser ablation, these coatings can eliminate ink debris, odors, and exhaust gases, making them suitable for sterile packaging. They also extend the lifespan of common filters and extraction equipment in printing lines. In addition, compared to laser ablation, coatings allow for faster laser imaging, thereby increasing production yield and extending laser lifespan at lower laser power.

Uniquely, these coatings provide white markings through a metal free natural alternative, with titanium dioxide commonly used in traditional and digital inks. This sustainable chemical composition and the resulting coatings are widely protected by exclusive patents held by DataLase. This comprehensive patent protection ensures a high degree of assurance in the supply chain.

Ally Grant, Chief Technology Officer of DataLase, stated, "Based on the high expectations set by our market leading paint and pigment technology, our innovative transparent to white coatings aim to reduce consumables and waste in the production environment. They not only increase production and productivity, but also have wear and friction resistance, thereby minimizing the need for potential rework and further waste.".

These coatings have a wide range of uses and are sufficient to meet product coding applications in various industries, including food and beverage, home and personal care, pharmaceuticals, and healthcare. They are compatible with a variety of substrates such as film materials, paper, and plastics, making them ideal for use in small bags, laminates, and bottles.

Source: Laser Net

Ähnliche Empfehlungen
  • Underwater laser cutting has been achieved with several advantages over common technologies such as saws, automatic wire saws and plasma cutting machines

    Due to the growing demand for renewable energy, the need for modern technologies to dismantle existing underwater infrastructure is also growing.For example, in order to boost the power of an offshore wind farm to a higher level, the existing old steel frame, which may be below sea level, must first be removed so that engineers can rebuild the steel frame for higher power.In laboratory tests, rese...

    2023-09-13
    Übersetzung anzeigen
  • Research progress on the interaction between strong laser and matter Electromagnetic induced transparency effect in plasma physics

    The transmission of electromagnetic waves (such as lasers) in plasma is a fundamental issue in plasma physics. In general, electromagnetic waves cannot be transmitted in high-density plasma, but their transmission and energy transfer play a crucial role in applications such as fast ignition laser fusion, laser particle acceleration, and ultra short and ultra bright radiation sources.In 1996, S. fr...

    2024-03-21
    Übersetzung anzeigen
  • Medium-long wavelength infrared quantum cascade laser of MOCVD on silicon

    Us researchers report 8.1 μm wavelength quantum cascade laser (QCL) grown on silicon (Si) by MOCVD [S. Xu et al., Applications. Physics Letters, v123, p031110, 2023]. "There are no previous reports of QCL growth on silicon substrates by metal-organic chemical vapor deposition (MOCVD)," commented the team from the University of Wisconsin-Madison, the University of Illinois at Urbana-Champaign an...

    2023-08-04
    Übersetzung anzeigen
  • Additive manufacturing of free-form optical devices for space use

    A group of researchers and companies are using the iLAuNCH Trailblazer program to develop and identify new optical manufacturing processes and materials for space flight applications, and demonstrating them in space cameras.The University of South Australia, together with SMR Australia and VPG Innovation, will utilize an emerging optical manufacturing technology called freeform optics, which is no...

    2023-12-04
    Übersetzung anzeigen
  • A professor from Sun Yat sen University proposes a new clean energy technology for laser manufacturing

    Energy conversion technology is an important research direction in modern science and engineering. Scientists are exploring new catalytic chemical methods to achieve the conversion of energy chemicals, such as photocatalysis and electrocatalysis. However, these highly anticipated catalytic chemistry technologies still have some problems in practical applications, and there is still a certain dista...

    2024-06-13
    Übersetzung anzeigen