EP-M150Pro adopts metal powder bed selective melting MPBF™ (Metal Powder Bed Fusion) technology, single and dual-laser printing modes are optional, which can be perfectly used for the rapid production of high performance, high-precision parts. Compatible with the most popular metal powder materials, including titanium alloy, aluminum alloy, nickel alloy, maraging steel, stainless steel, cobalt chrome, etc. It has been applied in versatile applications such as industrial manufacturing, medical, educa- tion, dental, materials development, etc.
High laser beam quality
Tiny laser spot
High consistency and uniform laser beam quality from different positons in the building platform
The density of printed parts can reach nearly 100 %
Volatility of mechanical properties< 5 %
In dual laser printing mode, precision deviation in alignment area ≤ 0.15 mm
The Layer thickness can be up to 100 μm
With the latested upgrated technology combining dual-laser with large layer thickness mode, the productivity has been risen for 2.3 ~ 2.7 times.
High consistency, different machines could use the same set of process parameters.
Machine compatible with multiple materials, the same machine can print multiple materials without adjusting the optical path.
Ergonomics overall design for users
With "one-click printing" function, each process is ready to run, click the "print" button on the screen to start EP printing.
The replacement of the building plate and recoater can be completed within 10 min.
Air consumption during processing < 3 L/min.
Powder supply is accurate, stable and controllable, high utilization rate of powder
The existing material parameter packages are provided for free
Safety design, anti-misoperation, anti-electric shock, fire prevention, anti-waste, anti-pollution
Real-time monitoring and traceable of working environment and gas source status, safe and reliable.
Machine Model | EP-M150Pro |
Build Volume (X x Y x Z) (height incl. build plate) | Φ 150 x 225 mm (Φ 5.91 x 8.86 in) |
Optical System | Fiber Laser 500 W (single or dual-laser optional) |
Spot Size | 70 μm |
Max Scan Speed | 8 m/s |
Theoretical Printspeed | Up to 55 cm³/h |
Layer Thickness | 20 - 100 μm |
Material | Titanium Alloy, Aluminum Alloy, Nickel Alloy, Maraging Steel, Stainless Steel, Cobalt Chrome, etc. |
Power Supply | 380 V, 50 / 60 Hz, 12 / 13.5 kW |
Gas Supply | Ar / N2 |
Oxygen Content | ≤ 100 ppm |
Dimension (W x D x H) | 2120 x 980 x 2250 mm |
Weight | 1500 kg |
Software | EPControl, EPHatch |
Input Data Format | STL or other Convertible File |
Eplus3D's EP-M150Pro metal 3D printer offers a wide range of materials, including Aluminum alloy, Titanium alloy, Inconel alloy, Maraging steel, Stainless steel, CoCr, Copper alloy, and more. The Aluminum alloy material provides lightweight and corrosion-resistant properties, suitable for applications in aerospace and automotive industries. The Titanium alloy offers excellent strength-to-weight ratio and biocompatibility, making it ideal for medical implants and aerospace components. Inconel alloy, known for its high-temperature resistance and exceptional mechanical properties, is commonly used in aerospace and gas turbine components. Maraging steel provides high strength with good toughness, suitable for tooling and high-strength component applications. The availability of Stainless steel material offers corrosion resistance and durability, widely utilized in various industrial components. CoCr and Copper alloy provide versatility for medical and thermal management applications, respectively. Eplus3D's EP-M150Pro with this diverse selection of materials caters to a wide range of industries, demonstrating its versatility and capability for advanced metal 3D printing.