ELEGOO Rapid PLA+ in brown is a high-speed filament for 3D printing, ideal for technical models, prototypes, and functional parts. It supports printing up to 600 mm/s, offers better flexibility and lower brittleness than regular PLA, and its muted shade helps mask small imperfections and highlight the model’s shape.
ELEGOO Rapid PLA+ filament is designed for fast and stable 3D printing. The material melts quickly and flows smoothly from the nozzle, which—when the printer is properly calibrated—reduces print times without sacrificing quality. Compared to standard PLA, it provides higher crack resistance and better layer bonding, making prints more durable in everyday use.
With a 1.75 mm diameter and a ±0.02 mm tolerance, feeding is consistent and the risk of nozzle clogging is reduced. The filament is machine-wound and then manually inspected to minimize tangling. The spool is vacuum-sealed with desiccant so the material is ready to print right after opening.
Main benefits:
- High printing speed – up to 600 mm/s (depending on calibration and settings)
- Tougher and less brittle prints than standard PLA
- Precise diameter and tolerance for stable extrusion
- Reduced tangling thanks to winding inspection
- Vacuum packaging with desiccant for moisture protection
Specifications
- Manufacturer
- ELEGOO
- Model
- 50.203.0313
- Material type
- Rapid PLA+
- Color
- Brown
- Weight
- 1 kg
- Filament diameter
- 1.75 mm
- Dimensional tolerance
- ±0.02 mm
- Recommended drying before printing
- 55 ± 5 °C
- Recommended ambient / storage conditions
- ≤ 50 °C, ≤ 20% relative humidity (store with desiccant)
- Recommended nozzle temperature
- 200–230 °C
- Recommended bed temperature
- 35–65 °C (depending on printer and surface)
- Recommended build plate type
- Textured PEI (polyetherimide) or other compatible plates
- Recommended printing speed
- Less than 600 mm/s
- Density
- 1.23 g/cm³
- Melting temperature
- 160 °C
- Heat deflection temperature
- 57 °C
- Softening point (Vicat)
- 62 °C
- Tensile strength (XY)
- 39 ± 2 MPa
- Elongation at break (XY)
- 8.5% ± 1.2%
- Flexural strength (XY)
- 71 ± 6 MPa
- Flexural modulus (XY)
- 2846 ± 175 MPa
- Impact strength (XY)
- 50.4 ± 2.8 kJ/m²