The Laseradd M100 series consists of high-cost-performance metal 3D printers designed for low operational costs. It features a compact design, an upgraded build chamber, and user-friendly operation. The software is fully open-source, supporting a wide range of materials. We also offer software operation training and educational services. The DiMetal-100E is primarily used for the development and production of precise small parts in dentistry and orthopedics, as well as for research, education, and experimentation.
View MoreA new generation especially for the vocational education industry.
The biggest feature is metal 3D melting without inert gas protection.
Ideal for low-cost education and training work, providing complete metal 3D printing operations and skills training for students and vocational trainees.
Laseradd M480 printers adopt a multi-laser and multi-galvanometer same-format forming solution, which can increase the forming efficiency by more than 80%.
It can be used in molds, automobiles, aerospace, nuclear power and military industry, orthopedic medicine and other fields.
Featuring moderate build size and high precision, metal 3D printers from M280 series ensure superior part quality with ultra-precision filtration system and fresh air protection system, offering dual protection to minimize defects. Ideal for small batch, moldless production or customization, M280 printers excel in mold manufacturing, industrial precision components, aerospace, automotive, medical applications, and scientific research.
View MoreThe third-generation, newly upgraded small SLM 3D printers feature a cost-effective configuration and low operational costs. With several generations of technological advancements, this printer delivers excellent market performance, combining low operating costs with high precision. It is primarily applied in dentistry, orthopedics, scientific research, education, and experimental applications.
View MoreThe printers of M650 series are multi-laser, large-format metal SLM printers with a large build volume. As a flagship product of Laseradd, it embodies years of technological advancement and is among the few SLM systems in the domestic market capable of producing large parts. The DiMetal-650 is ideal for applications in aerospace, mold making, automotive, and other industries requiring large-scale components.
View MoreLaseradd’s efficient solution for large-scale metal 3D printing applications. Featuring a dual-laser, dual-galvanometer configuration, it boosts molding efficiency by over 80%. For the first time, it incorporates a closed internal powder processing system to minimize dust exposure and protect human health. Ideal for applications in mold making, automotive, aerospace, nuclear power, military, and orthopedic medicine.
View MoreThe M450 series by Laseradd offers an efficient solution for large-scale metal 3D printing applications. It features a dual-laser, dual-galvanometer system with a same-format forming solution, increasing molding efficiency by over 80%. The printer incorporates a closed internal powder processing system, minimizing dust and reducing potential harm to operators. Ideal for use in molds, automotive, aerospace, nuclear power, military industries, and orthopedic medicine.
View MoreThe Laseradd M300D is a multi-material metal 3D printer capable of forming 1-4 materials simultaneously, enabling the production of complex, multi-material parts in a single process. It meets diverse material performance requirements and enhances part design for complex scenarios. Applications include power, industrial molds, scientific research, aerospace, education, and multi-material experiments.
View MoreThe printers of M650 series are multi-laser, large-format metal SLM printers with a large build volume. As a flagship product of Laseradd, it embodies years of technological advancement and is among the few SLM systems in the domestic market capable of producing large parts. The DiMetal-650 is ideal for applications in aerospace, mold making, automotive, and other industries requiring large-scale components.
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