Bambu Lab

PLA AERO - Bambu Lab 1.75mm 3D Printing Filament

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SKU:
BAMBU-AERO-PLA-1.75-1000-SPL
$59.00

Description

Free shipping in Canada for orders over $140 before tax. (via Canada Post)

Product Features

  • Specialized for 3D RC Planes Printing
  • Low Density and Light Weight
  • Tough with Good Impact Resistance
  • Matte Finish For Easy Coloring
  • Comes with Basic Reusable Spool
  • Diameter: 1.75mm +/- 0.03mm

Cautions for Use

  • Recommended to dry out before use
  • AMS & AMS lite Compatible

What's in the box:

  • 1kg of chosen colour of PLA Aero on a reusable spool

Bambu PLA Aero

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.

Foaming PLA materials (PLA Aero) have high requirements for material drying and parameter settings. Please carefully read Instructions for printing aircraft model with foaming PLA (PLA Aero) before starting the printing process.

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%.

* When printing models of the same volume, PLA Aero is about half the weight of PLA Basic.

Controllable Model Density

Achieve lower density of the prints by increasing printing temperature and lowering flow rate.

* The average density of prints will vary with changes in parameters such as actual printing temperature, flow rate ratio, printing speed, model size, wall thickness and infill density.

The relationship between the maximum foaming rate, minimum print density, and printing temperature of PLA Aero.

Printing Temperature
Minimum Flow Rate Ratio
Maximum Volumetric Expansion Ratio
Maximum Foaming Rate
Minimum Prints Density
190 °C ~ 0.95 ~ 100% ~ 0% ~ 1.17 g/cm³
200 °C 0.89 110% 10% 1.06 g/cm³
210 °C 0.85 115% 15% 1.02 g/cm³
220 °C 0.76 129% 29% 0.91 g/cm³
230 °C 0.62 158% 58% 0.74 g/cm³
240 °C 0.45 217% 117% 0.54 g/cm³
250 °C 0.38 258% 158% 0.45 g/cm³
260 °C 0.35 280% 180% 0.42 g/cm³
270 °C 0.37 265% 165% 0.44 g/cm³

Specimen Test: Nozzle Type: 0.4 mm; Printing Speed: 80 mm/s; Model size (L*W*H): 80*10*4 mm³ (the XY direction)

The actual required flow rate ratio and final model density may vary with different models.

Tough with Good Impact Resistance

Compared to pre-foaming Wood PLA, Bambu PLA Aero and its prints are tougher and more resistant to impact, collision, and falling.

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.

Accessory Compatibility

  Recommended Not Recommended
Build Plate
Cool Plate SuperTack, Smooth PEI Plate, Textured PEI Plate
/
Hotend
Hotend with Hardened Steel Nozzle 0.4 mm
Hotend with Stainless Steel Nozzle 0.4 mm
Hotend with Hardened Steel Nozzle 0.6 mm / 0.8 mm
Hotend with Stainless Steel Nozzle 0.2 mm
Glue Bambu Liquid Glue
Glue Stick
/
 

RFID for Intelligent Printing

All printing parameters are embedded in RFID, which can be read through the AMS (Automatic Material System).

Load and print! No more tedious setting steps.

Printing Tips

• PLA Aero filament is relatively soft which may result in material loading and unloading failures during AMS printing.

• Drying conditions: 55℃ for 8 hrs. PLA Aero is highly sensitive to humidity. To achieve optimal printing performance, it is recommeded further drying before use and after storage. For more details please refer to: Filament drying instructions on WIKI.

Recommended Printing Settings
Drying Settings (Blast Drying Oven) 55 °C,8 h
Printing and Keeping Container's Humidity < 20% RH (Sealed, with Desiccant)
Nozzle Temperature 220 - 260 °C
Bed Temperature (with Glue) 35 - 45 °C
Printing Speed < 180 mm/s
Foaming Rate 0-120%
Prints Density 0.55 - 1.05 g/cm3

 

Physical Properties  
Density 1.21 g/cm³
Vicat Softening Temperature 54 °C
Heat Deflection Temperature 53 °C
Melting Temperature 153 °C
Melt Index 7.7 ± 0.6 g/10 min

 

Mechanical Properties  
Tensile Strength 24 ± 2 MPa
Breaking Elongation Rate 2.6 ± 0.7 %
Bending Modulus 1690 ± 120 MPa
Bending Strength 45 ± 4 MPa
Impact Strength 28.8 ± 1.3 kJ/m²

 

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