EP-M4750 adopts Metal Powder Bed Fusion(MPBFTM) technology, featuring a forming chamber that reaches up to 450 x 750 x 530 mm. EP-M4750, equipped with 2/4 lasers, is designed to ensure high efficiency production.
Compatible with titanium alloy, aluminum alloy, nickel alloy, maraging steel, stainless steel and cobalt chrome, etc. EP-M4750 is an ideal choice for direct manufacturing of large-size, high-precision and high-performance parts in the aerospace, aviation and tooling industry and other relevant industries.
Build volume (X x Y x Z): 450 x 750 x 530 mm (height incl. build plate), build chamber volume>170 L.
The printer is capable of printing at speeds of up to 70 cm³/h, with multi-laser simultaneously engaged in the printing process.
Printing with an increased layer thickness can significantly boost production capacity.
Optimized design of gas flow ensures the effective removal of dust and splatter.
Overlapping deviation ≤±0.1 mm.
The strict calibration ensures the consistency between parts and batches.
Friendly user interface with fully automatic one click printing function.
Process software enables the effective planning of design, simulation and printing path planning, within one software and highly improving the production efficiency.
Three-stage filtration, which can use blow back function to remove the fume, equipped with permanent filter element.
The build job information is displayed in real time with traceable printing parameters report.
Process software supports SLC and CLI formats, enabling real-time modification of printing parameters during the printing process.
Machine Model | EP-M4750 |
Build Volume (X x Y x Z) (height incl. build plate) | 450 x 750 x 530 mm (17.7 x 29.5 x 20.8 in) |
Optical System | Fiber Laser 2/4 x 500 W (700 W is optional) |
Spot Size | 70 - 120 μm |
Max Scan Speed | 8 m/s |
Layer Thickness | 20 - 120 μm |
Theoretical Printspeed | Up to 70 cm³/h |
Material | Titanium Alloy, Aluminum Alloy, Nickel Alloy, Maraging Steel,Stainless Steel, Cobalt Chrome, Copper Alloy, etc. |
Power Supply | 380 V, 50 / 60 Hz, 117 kW |
Gas Supply | Ar / N2 |
Oxygen Content | ≤ 100 ppm |
Dimension (W x D x H) | 6400 x 4070 x 3585 mm |
Weight | 12000 kg |
Software | EPControl, EPHatch |
Input Data Format | STL or other Convertible File |
Eplus3D printers are designed to work seamlessly with an extensive range of metal powders, including Titanium, Aluminum, Nickel-based alloys, Die Steel, Stainless Steel, and Chrome Cobalt Alloys, cobalt chrome powder, as well as other commonly used materials in metal additive printing. Titanium, known for its exceptional strength-to-weight ratio and biocompatibility, is often utilized in aerospace, medical, and high-performance engineering applications. 3d printing aluminum alloys, prized for its lightweight nature and corrosion resistance, finds widespread use in aerospace, automotive, and consumer goods industries. Nickel-based alloys, including Inconel and Hastelloy, are valued for their high-temperature and corrosion resistance, making them ideal for aerospace, chemical processing, and marine applications. Furthermore, Die Steel, Stainless Steel, and Chrome Cobalt Alloys offer exceptional mechanical properties and wear resistance, catering to a diverse range of industrial requirements. Eplus3D printers' capability to process these varied metal powders ensures versatility and adaptability to meet the demanding needs of modern metal additive printing across multiple industries.