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Contact SuppliernAdditive manufacturing encompasses diverse industrial technologies, particularly in the realm of metal 3D printing, which employs either powder nozzle or powder bed techniques. This advanced process enables the production of objects with intricate properties and challenging geometries that rival the mechanical attributes of traditionally manufactured items. By maximizing functional integration and enabling the creation of lightweight structures, additive manufacturing generates significant value for customers. A robust system design combined with a powerful laser ensures consistent high performance and reliability, making it a reliable choice for various industrial applications. This not only enhances productivity but also pushes the boundaries of design, allowing manufacturers to innovate and create parts that were previously deemed impossible. POLYMER 3D PRINTING While industrial 3D printing promises more flexibility and creative freedom than traditional manufacturing, understanding different materials and technologies can be a challenge. Here’s your easy path into the limitless world of polymer 3D printing. Driving the future of polymer 3D printing will always matter more than resting on the laurels of our past. The unique balance of established and reliable technologies like selective laser sintering (SLS) and our experts' restless urge to innovate is what allows to offer effectively integrated polymer industrial 3D printing solutions. polymer 3D printers, materials, and services support flexible, cost-efficient production of end-use polymer parts at any scope — from rapid prototyping to industrial-scale manufacturing. Build Volume 340 x 340 x 600 mm (13.4 x 13.4 x 23.6 in) Laser Type CO₂; 1 x 70 W Scan Speed up to 6.0 m/s (19.7 ft/s) Focus Diameter approx. 480 µm (0.01890 in) Power Supply 1 x 32 A Power Consumption max. 10.0 kW / typical 2.1 kW Selective Laser Sintering (SLS) A high-powered laser selectively fuses powdered material, layer-by-layer. SLS machines are available in large build sizes and compatible with robust materials to enable durable, high-heat and chemically resistant applications. SLS is perfect for functional prototypes, complex end-use parts, and low- to mid-volume production of components, enclosures, and ducting across industries.High precision building of 3D parts with a focus diameter of only 35 µmExceptional Quality at High Volume Ideal for serial manufacturing of large metal parts, the delivers repeatable excellence. Highly Productive 1000-watt laser power increases productivity with higher build rates and thicker layers. Ideal for serial manufacturing of large metal parts. Easy to Use Coating both sides with powder material reduces production downtime. A circulating air filtering system with automatic cleaning means fewer filter changes and longer service life. Broad Portfolio of Materials A comprehensive collection of materials is available, from light metals to stainless steel, tool steels and super alloys. • Application-specific fibre laser sources from 1000 W •Optimised shield gas volume flow for highest component quality with minimum Argon consumption Technical Specification · Fuild Volume 400 x 400 x 400 mm (15.7 x 15.7 x 15.7 in) · Laser Type Yb-fiber laser; 1 x 1000 W · Presicion Optics 1 F-theta-lens(es); 1 High-speed scanner(s) · Scan Speed up to 7.0 m/s (23.0 ft/s) · Focus Diameter approx. 90 µm (0.00354 in) · Power Supply 1 x 50 A · Power Consumption max. 50.2 kW / typical 16.2 kW · Compressed Air Supply 7 Bar; 20 m³/h (102 psi; 706 ft³/h) · Machine Dimensions 4181 x 1613 x 2355 mm (164.6 x 63.5 x 92.7 in) · Recommended Installation Space min. 6500 x 6000 x 3300 mm (255.9 x 236.2 x 129.9 in) · •Open system: Individual adjustment of all machine settings and process parameters as well as unrestricted selection of the material supplier ·