The SLS2030 Super Maker leverages SLS technology, where a high-powered laser selectively sinters powdered material to create complex 3D structures layer by layer. This technology eliminates the need for support structures, allowing for the creation of intricate and durable parts with excellent mechanical strength. The printer’s large build volume of 200 x 300 x 300 mm ensures that users can produce both small, detailed parts and large components in a single print run.
The SLS2030 Super Maker is engineered for high-performance printing with materials like Nylon, PA12, and PA11, enabling it to deliver functional parts that can withstand wear and tear, high temperatures, and impact. Additionally, its advanced powder handling system ensures efficient material use, reducing waste and lowering production costs. With a focus on precision and reliability, the SLS2030 Super Maker is the perfect tool for industries such as aerospace, automotive, and medical manufacturing.
Model Specifications
Specification | Details |
---|---|
Printing Size | 200 x 200 x 300 mm |
Machine Size (LWH) | 1110 x 800 x 1700 mm |
Operating Software | Independent research and development by Zongheng3D |
Slicing Software | Self-development |
Laser Type | Fiber Laser, 1*40W |
Scanner | High-precision Digital Galvo System |
Layer Thickness | 0.1 – 0.3 mm |
Net Weight (Without Material) | 400 kg |
Maximum Cabin Temperature | 190°C |
Inert Gas Protection | Nitrogen |
Supports | No Need Support |
Power Supply | 220V / 50Hz |
Thermal Field Control | Multi-area independent control |
Operating Temperature | 18-30°C |
Powder Feeding Method | Single feed powder |
Maximum Volume Molding Rate | 3000 cm3/h |
Scanning Speed | 8 – 15 m/s |
Data Format | STL |
Support Interface | RS232 / RS485 / Ethernet / USB / Canopen |
Procedure Control Unit | Motion Control Card |
Real-time Online Temperature Compensation | Supported |
Matched Material | PA11, PA12, TPU, Nylon with GF |
Control Software Function | Manual and automatic control methods, online real-time modification of construction parameters, 3D visualization, diagnostic functions |