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05/25/2016 12:39

LZH shows the potential of the laser for industrial manufacturing at the LASYS 2016

Dr. Nadine Tinne Marketing & Communications
Laser Zentrum Hannover e.V.

    From May 31st to June 02nd, 2016, international industry representatives will be coming to Stuttgart for an exchange about innovations, further developments and trends. The Laser Zentrum Hannover e.V. (LZH), too, together with the LZH Laser Akademie GmbH, will be presenting current research and development results, a broad services portfolio and further education programs for industrial laser users.

    In hall 4 at stand E35, the research institute from Lower Saxony will be showing exhibits and services for laser micro processing with ultrashort pulse lasers, underwater laser cutting and additive manufacturing.

    Highly precise and highly flexible: Manufacturing micro structures, sensors and functional surfaces with the laser

    Laser micro processing enables manufacturing processes for components that are not possible with conventional manufacturing techniques. Here, ultrashort pulse lasers with pulse durations in the pico- and femtosecond range are used to generate highly precise and durable structures in almost all solid materials. Another advantage of this process, besides the flexibly usable lasers, is that thermal and mechanical damages are negligible. Thus, for example thin-film strain sensors for measuring forces and momentums can be applied directly on the component. In this way, picosecond lasers generate functional surfaces with variable geometries by laser structuring. An application field for these surfaces is gravure printing in organic electronics.

    Cutting metals faster and more cost-efficient underwater

    Underwater works are often time-consuming and physically very demanding for the divers. The LZH develops an automated laser-based cutting process that increases the cutting speed significantly. Currently, the main application is cutting sheet pilings. But this laser-based process is also suited for repairing offshore-facilities and ships, as well as for dismantling nuclear power plants or for underwater mining.

    Additive manufacturing using Selective Laser Melting and laser deposition welding

    With Selective Laser Melting (SLM) it is possible to create smallest three-dimensional structures, complex parts or individual implants virtually “out of nothing”. The LZH develops processes for the additive manufacturing of load-adapted parts and for the processing of special materials, such as magnesium. With Selective Laser Micro Melting (SLµM) it is thus also possible to manufacture parts with resolutions up to <30 µm. When high-quality machine parts are damaged, they can in many cases be repaired by Laser Metal Deposition welding (LMD). Moreover, adding layers by LMD can protect three-dimensional surfaces from wear and corrosion.

    Further education seminar „Additive Manufacturing Specialist“

    The LZH Laser Akademie GmbH, one of the leading further education centers in applied laser technology, together with the Schweißtechnische Lehr- und Versuchsanstalt (SLV) Hannover is nationwide the first to offer a new certified further education seminar “Additive Manufacturing Specialist”. In this five-day course, skilled workers, master craftsmen and technicians learn how to operate systems for Selective Laser Melting.


    Images

    Individual magnesium implant, manufactured by optimized Selective Laser Melting
    Individual magnesium implant, manufactured by optimized Selective Laser Melting
    Photo: LZH
    None

    Efficient processes: Model of laser underwater cutting.
    Efficient processes: Model of laser underwater cutting.
    Photo: LZH
    None


    Criteria of this press release:
    Business and commerce, Journalists
    Materials sciences, Mechanical engineering
    transregional, national
    Transfer of Science or Research
    English


     

    Individual magnesium implant, manufactured by optimized Selective Laser Melting


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    Efficient processes: Model of laser underwater cutting.


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