Bambu Lab PLA Aero
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Bambu PLA Aero achieves low density and light weight by foaming at high temperatures during printing and creating small holes inside the prints. It's the perfect choice for light-weight and energy-saving prints, including unmanned aerial vehicles (UAVs), aerodynamic models, and gliders.
*Shipping Time: 1-2 Weeks*
$44.99
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Product Details
Specifications
Features:- Specialized for 3D RC Planes Printing
- Low Density and Light Weight
- Tough with Good Impact Resistance
- Matte Finish For Easy Coloring
- Recommended to dry out before use
- AMS Compatible
Features:
- Specialized for 3D RC Planes Printing
- Low Density and Light Weight
- Tough with Good Impact Resistance
- Matte Finish For Easy Coloring
- Recommended to dry out before use
- AMS Compatible
Low Density and Light Weight
Bambu PLA Aero has almost the same filament density as regular PLA, while the prints density is only 50% to 80%.
Bambu PLA Aero has almost the same filament density as regular PLA, while the prints density is only 50% to 80%.
Controllable Model Density
Achieve lower density of the prints by increasing printing temperature and lowering flow rate.
Achieve lower density of the prints by increasing printing temperature and lowering flow rate.
Matte Finish For Easy Coloring
Bambu PLA Aero provides an easy-to-color matte surface texture with better dyeing results as compared to PLA Basic.
Bambu PLA Aero provides an easy-to-color matte surface texture with better dyeing results as compared to PLA Basic.
Bambu Lab PLA Aero
- Drying Settings (Blast Drying Oven):55 °C,8 h
- Printing and Keeping Container's Humidity:Less than 20% RH (Sealed, with Desiccant)
- Nozzle Temperature:210 - 260 °C
- Bed Temperature (with Glue):35 - 45 °C
- Printing Speed:Less than 250 mm/s
- Density:1.21 g/cm³
- Vicar Softening Temperature:56 °C
- Heat Deflection Temperature:54 °C
- Melting Temperature:154 °C
- Melt Index:5.0 ± 0.6 g/10 min
- Tensile Strength:26 ± 2 MPa
- Breaking Elongation Rate:2.2 ± 0.8 %
- Bending Modulus:1960 ± 110 MPa
- Bending Strength:42 ± 3 MPa
- Impact Strength:24.5 ± 1.7 kJ/m²