For the toolmaking industry
Service life, reliability and repairability are absolutely crucial in toolmaking. Laser technologies from OSCAR-PLT offer you high-performance solutions for additive manufacturing and repair that significantly extend the service life of your tools and production systems. Our precise laser systems enable you to work cost-efficiently and increase productivity. Rely on OSCAR-PLT to maximise the efficiency and competitiveness of your toolmaking business.
The proven metal 3D printing system that started it all. A versatile technology that enables unmanned, direction-independent welding - with both wire and powder LMD (Laser Metal Deposition).
This compact version of our pioneering laser head weighs just 6 kilograms and still brings all the advantages of the ProFocus technology, enabling new applications and geometries.
The compact version of our laser cell for production environments with small to medium-sized components. It combines the quality and efficiency of the ProFocus laser cell with a particularly compact footprint and easy transportability.
Do you have questions about our company, our products or our services? Then you've come to the right place.
Our trailing gas nozzles can be customised, even from a quantity of just a single piece. Integrated cooling channels are particularly recommended for use with high currents or laser power.
ProFocus laser heads, as well as the entire system technology, are built for industrial use – they are insensitive to dust, moisture, vibrations and temperature fluctuations. Even in applications under the harshest conditions, such as in mining operations, our systems have already proven themselves over several years.
Our trailing gas nozzles are very robust and durable. They are equipped with wear parts to withstand the thermal loads during welding as well as spatter, fumes and dirt. In addition, our nozzles can be designed with or without cooling, depending on the operating conditions. Furthermore, the gas distribution in the trailing gas nozzles and the outflow from the nozzle have been optimised using modern flow simulation methods so that the nozzles provide a laminar shielding gas film as quickly and efficiently as possible.
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