Elevate Your Prints with Bambu Lab 3D Printer Filament PLA Matte
Transform your 3D printing projects from standard plastic models into premium, professional-grade creations with the Bambu Lab 3D Printer Filament PLA Matte. Designed to deliver a sophisticated, non-glare finish, this filament effectively hides layer lines and surface imperfections, giving your prints a smooth, injection-molded appearance.
Whether you are printing architectural models, aesthetic home decor, or intricate character designs, this high-quality matte PLA provides the perfect balance of visual appeal and structural reliability. Available in an expansive palette, the Bambu Lab 3D Printer Filament PLA Matte ensures you have the exact shade you need to bring your creative vision to life.

Essential technical characteristics for the Bambu Lab 3D Printer Filament PLA Matte
| Nozzle temperature | 190–230 °C |
|---|---|
| Plateau temperature | 35–65 °C |
| Diameter | 1.75 mm |
| Identification | RFID chip recognized by a compatible AMS |
| Indicative drying time | 50°C for 8 hours if humid |
Choosing the right filament
| Criteria | Bambu Lab PLA Mat |
|---|---|
| Best to prioritize | The projects correspond to the properties and constraints described in this document. |
| Check before buying | Available temperatures, nozzle type, chamber, and AMS compatibility |
| Condition for success | Properly dried filament and suitable material profile |
Why Choose Bambu Lab 3D Printer Filament PLA Matte?
Bambu Lab has engineered this filament not just for looks, but for seamless performance, especially when paired with modern high-speed 3D printers.
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Stunning Matte Finish: Say goodbye to the glossy, toy-like shine of traditional PLA. The matte texture absorbs light, softening the appearance of layer lines and delivering a flawless, premium feel right off the build plate.
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Vibrant Variety: With 17 unique and highly saturated colors to choose from, you can mix, match, and print multi-color models without compromising on your design’s color accuracy.
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High-Speed Ready: Formulated for excellent fluidity and rapid cooling, this filament keeps up with the blistering speeds of Bambu Lab X1, P1, and A1 series printers without under-extruding or losing detail.
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Intelligent AMS Integration: Each spool comes equipped with an RFID tag that communicates directly with the Bambu Lab Automatic Material System (AMS). Your printer will automatically recognize the material type and color, applying the optimal print settings instantly.
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Eco-Friendly Design: Made from renewable, plant-based resources, PLA Matte is environmentally friendly and biodegradable under industrial composting conditions. Furthermore, it comes on a reusable spool system to minimize plastic waste.
Recommended Print Settings
To achieve the best possible surface quality and structural integrity, we recommend the following baseline parameters:
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Nozzle Temperature: 190°C – 230°C
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Bed Temperature: 35°C – 45°C
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Print Speed: Up to 300 mm/s (Optimize based on your hotend flow rate)
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Cooling Fan: 100% after the first layer
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Build Surface: Textured PEI Plate, Cool Plate, or Engineering Plate
Optimal Storage Guidelines
While PLA Matte is highly forgiving, keeping your filament dry is essential for preventing stringing and brittleness. We recommend storing your Bambu Lab 3D Printer Filament PLA Matte in a dry box or a vacuum-sealed bag with silica gel packets when not in active use.
TECHNICAL SPECIFICATIONS
| Properties | Data |
| Drying parameters before printing | 55°C, 8 hours |
| Printing and maintaining container humidity | < 20% RH (sealed, with desiccant) |
| Nozzle temperature | 190 – 230 °C |
| Bed temperature (with PVP glue) | 35-45 °C |
| Printing speed | < 300 mm/s |
| Density | 1.31 g/cm³ |
| Vicaire softening temperature | 63 °C |
| Thermal deflection temperature | 58 °C |
| Melting point | 163 °C |
| Merger index | 39.4 +/- 3.2 g/10 min |
| Tensile strength | 32 +/- 2 MPa |
| Elongation at break rate | 32.8 +/- 4.3% |
| Flexural modulus | 2360 +/- 250 MPa |
| Flexural strength | 53 +/- 2 MPa |
| Impact resistance | 19.2 +/- 3.7 kJ/m² |










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