Features | |
Dimensions: | 2960x12706x2500 mm3 |
layering thickness: | 20-120 μm |
Max Speed: | 140 cm³/h (four lasers) |
Observation window
Electrical control cabinet
Material receiving area
Forming area (Print video provided)
The XY axis forming size is the highest among similar products, and it is equippedwith 4*500W lasers as standard, with a maximum forming efficiency of 140cm3/hand high printing efficiency, Advanced multi-laser scanning strategy and calibra-tion algorithm ensure high printing efficiency and controllable quality.
Quad-laser configuration, each laser achieves full coverage of the build areausing a sophisticated scanning strategy to achieve uniform energy control withinthe build area.
Short sieving times for large powder volumes and a closed powder circulationoop provide high production efficiency and operational safety. The entire processchain can also be operated in a protective gas atmosphere: sieving, printing,cooling, de-powdering.
The software, algorithm and control system are independently developed by Linmu3Dto ensure information security and technical controllability. The process parametersare open source and personalized customization can meet diverse production needs.
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Explore applications for 3D printing across a range of industries
Material:316L
Weight:15KG
Application:Energy
Material:316L
Weight:9KG
Application:Automotive
Material:316L
Weight:1.2KG
Application:Mold
Dimension | 2960x1270x2500 mm³ (Length, Width, Height) |
Forming Cylinder Size | 406 x 406 x450 mm |
Scanning Speed | 4×7 m/s |
Light Spot Diameter | 70μm-120μm |
Light source | 4x500W |
Powder Layering Thickness | 20μm-120μm |
Forming Speed | Max 140 cm3/h (four lasers) |
Applicable Material | Titanium alloys, high-temperature alloys, stainless steel, high-strength steel, die steel, etc |
Chamber Oxygen Level | ≤100ppm |
Electrical Consumption | 380V, 34 KW |
Weight | 4.2T |
Metal 3D Printing is a cutting-edge additive manufacturing technology that builds fully dense metal parts directly from digital designs. Using high-precision lasers to selectively melt fine metal powders layer by layer, it enables unparalleled design freedom, exceptional detail, and performance-grade strength.
Our R&D team is dedicated to improving printing accuracy and production efficiency through precise laser parameter control,
temperature management, and material parameter adjustments
Our engineers will help select the best-fit solution based on your part complexity, material, and production needs.
807×607×900 mm build size with 4/6/8 laser options. High efficiency and precision for aerospace, molds, and automotive parts.
286×286×450 mm build size with single or dual-laser options. Supports titanium, aluminum, nickel alloys, and more—perfect for aerospace and tooling applications.
Small-format design for rapid prototyping with industrial-grade metals. Supports one-button printing and remote control—ideal for research and product development.
406×206×230 mm build area with 20 μm resolution. Captures fine sole textures and logos. Optimized powder system for stable shoe mold production.
Linmu3D Limited 2025