The Mingda Pellet Industrial Sensor 3D Printer can print objects up to 500x500x500mm, making it suitable for larger industrial applications.
This printer is compatible with a wide range of materials including PLA, PETG, ABS, metal, ceramic composites, and other pellet-based materials.
FGF Molding Technology, or Fused Granular Fabrication, allows for precise and reliable printing with pellet-based materials, enhancing the overall print quality.
Yes, the Mingda Pellet Industrial Sensor 3D Printer is equipped with a built-in resume printing function, ensuring that prints can continue after power interruptions.
The printer can achieve printing speeds of up to 300mm/s, allowing for faster production.
The filament detection feature automatically detects if the printer is running out of material and can pause the printing process to prevent print failures.
Yes, the Mingda Pellet Industrial Sensor 3D Printer features a heated bed, which improves print quality and adhesion to the surface.
The printer comes with a single nozzle, with a diameter range from 0.4mm to 2.0mm, and an optional 3.0mm nozzle for different printing requirements.
The printer's nozzle can reach temperatures up to 450°C, enabling it to print high-temperature materials.
The printer weighs 60 KG, which contributes to its compact and sturdy design.
Yes, the printer features an auto leveling function to ensure accurate printing by automatically leveling the print bed.
The printer uses a screw rod extrusion system for consistent filament feeding, which enhances print reliability.
Absolutely! The Mingda Pellet Industrial Sensor 3D Printer is ideal for educational settings, allowing students to explore additive manufacturing and generate educational models.
The printer is suitable for various industries including automotive, medical, education, film and game, and portrait printing, among others.
Compared to traditional CNC production methods, this printer shortens the production cycle, reduces manufacturing costs, increases material utilization, and simplifies post-processing.
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