PLA

PLA

High-Quality 3D Printing Filament for Every Project

PLA Filament for 3D Printers – Basic, Matte, Silk, Pro, Heat-Resistant & Carbon Fiber Options

La collection de filaments PLA de Polymaker réunit six formulations spécialisées pour chaque application, du prototypage à grande vitesse aux pièces fonctionnelles résistantes à la chaleur et aux finitions de qualité exposition. Choisissez Panchroma™ Basic PLA pour une impression ultrarapide jusqu’à 350 mm/s, Panchroma™ Matte PLA pour des surfaces professionnelles non réfléchissantes, Panchroma™ Silk PLA pour des impressions décoratives brillantes, Polymaker™ PLA Pro pour une résistance accrue, Polymaker™ HT-PLA pour une résistance à la chaleur jusqu’à 130 °C après recuit, ou PLA-CF pour une rigidité renforcée par la fibre de carbone et une stabilité dimensionnelle. Tous les filaments offrent une qualité d’impression exceptionnelle, des couleurs éclatantes et un gauchissement minimal sur toutes les principales imprimantes 3D FDM.
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  • Panchroma™ Neon PLA

    $24.99
    Voir les détails
  • Panchroma™ Metallic PLA

    $24.99
    Voir les détails
  • Panchroma™ Glow PLA

    $24.99
    Voir les détails
  • Polymaker Wood PLA 1.75mm 3D printer filament - Wood
    Épuisé

    PLA bois Polymaker

    $29.99
    Voir les détails
  • Panchroma™ Gradient Arc-en-ciel lumineux PLA

    $29.99
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  • Panchroma™ Gradient Satin PLA

    $24.99
    Voir les détails
  • PolyLite™ PLA-CF

    $29.99
    Voir les détails
  • Panchroma™ Dual Special PLA

    $29.99
    Voir les détails
  • Matte PLA for Production 1.75mm 3D printer filament | Polymaker - White
    Épuisé

    Matte PLA pour la production

    $49.99
    Voir les détails
  • Panchroma™ Gradient Translucent PLA

    $24.99
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  • PolySupport for PLA 1.75mm 3D printer filament | Polymaker - Pearl White
    Épuisé

    PolySupport™ pour PLA

    $29.99
    Voir les détails
  • Panchroma™ UV Shift PLA

    $24.99
    Voir les détails

Why Choose Polymaker PLA Filament?

  • Bioplastic-based formulation Made from renewable resources, PLA is one of the most environmentally friendly 3D printing materials available.
  • Easy to print Low printing temperatures (190–230°C), minimal warping, and excellent bed adhesion make PLA ideal for beginners and advanced users alike.
  • Wide finish options Choose from glossy (Basic, Silk), matte (Matte, PLA-CF), or specialized formulations (PLA Pro, HT-PLA) to match your project's aesthetic and functional requirements.
  • High-speed capable Panchroma™ Basic PLA supports print speeds up to 350 mm/s, while Matte and Silk formulations handle up to 300 mm/s and 250 mm/s respectively—optimized for modern printers like Bambu Lab and Prusa.
  • Specialized performance From impact-resistant PLA Pro to heat-stable HT-PLA and stiffness-enhanced PLA-CF, Polymaker offers engineered solutions for functional applications.
  • Eco-conscious spools Most Polymaker PLA filaments come on 100% recycled cardboard spools, reducing plastic waste without compromising durability.

PLA Filament Types – Find the Right Finish and Performance for Your Project

FeaturePanchroma™ Basic PLAPanchroma™ Matte PLAPanchroma™ Silk PLAPolymaker™ PLA ProPolymaker™ HT-PLAPLA-CF
Surface FinishStandard glossySmooth, non-reflective matteHigh-gloss, silky shineStandard semi-glossStandard semi-glossSmooth matte with carbon fiber texture
Best ForHigh-speed printing, miniatures, cosplay, everyday modelsFunctional parts, display models, miniatures, professional finishesDecorative items, cosplay props, gifts, display piecesEngineering parts, functional prototypes, impact-resistant componentsHeat-resistant parts, tools, enclosures, outdoor gear, automotive componentsFunctional parts, jigs, fixtures, stiff components, dimensional stability
Print Temperature190–230°C190–230°C190–230°C210–230°C210–230°C190–230°C (220–230°C at high volumetric flow)
Bed Temperature25–60°C25–60°C25–60°C30–60°C25–60°C25–60°C
Print SpeedUp to 350 mm/s (28 mm³/s volumetric flow)Up to 300 mm/s (24 mm³/s volumetric flow)Up to 250 mm/s (20 mm³/s volumetric flow)40–60 mm/s (classic), up to 300 mm/s (high-speed mode)Up to 300 mm/sUp to 15 mm³/s volumetric flow (slower than standard PLA)
Density1.23–1.32 g/cm³~1.24 g/cm³~1.20 g/cm³~1.24 g/cm³1.287 g/cm³1.29 g/cm³
Glass Transition (Tg)61°C~61°C~64°C~61°C59.8°C~60°C
Vicat Softening Temperature61–62°C (as printed)~61°C~64°C~62°C152–156°C (as printed), 155°C+ (annealed)~80°C
Heat Deflection Temperature (HDT)~58–61°C~58–61°C~60–64°C~58–61°C58.6°C (as printed), 107–150°C+ (annealed)~91°C
Tensile Strength (X-Y)40.4–52.3 MPa~52.3 MPa~35–40 MPa~51.6 MPa42.86 MPa~48 MPa
Young's Modulus (X-Y)3071 MPa~3427 MPa~2500–3000 MPa~2515–3427 MPa2945 MPa~4950 MPa (significantly stiffer)
Elongation at Break~6–10%~6–10%~6–10%~6–10% (balanced rigidity/toughness)~6–10%~2–5% (more brittle due to carbon fiber)
Special FeaturesHyper-flow formulation for high-speed printing, AMS/MMU compatibleHides layer lines, professional matte finish, slightly abrasive (hardened nozzle recommended for heavy use)Glossy silk finish, improved layer adhesion, reduced clogging vs. generic silk PLAEnhanced impact resistance and rigidity, bridges gap between standard PLA and PolyMax PLAWithstands up to 130°C when annealed, low warping, odor-freeCarbon fiber-reinforced (8% by weight), exceptional stiffness, dimensional stability, smooth matte surface
Annealing RecommendedNoNoNoNoYes (80–100°C for 30 min for max heat resistance)No
Nozzle RequirementsStandard brass nozzle (0.4 mm recommended)Standard brass nozzle (hardened recommended for heavy use)Standard brass nozzle (0.4 mm recommended)Standard brass nozzle (0.4 mm recommended)Standard brass nozzle (0.4 mm recommended)Hardened steel nozzle required (0.6 mm highly recommended, 0.4 mm hardened acceptable)
AMS/MMU CompatibleYesYesYesYesYesNo (abrasive—can damage AMS gears)
Color Options30+ vibrant colors50+ matte colors (including Dual Matte, Gradient, Marble, Satin)20+ silk colors (including Dual Silk, Gradient Silk)Multiple colors14+ colors including gradientsLimited colors (typically black, gray, white)

Printer Compatibility

Polymaker PLA filaments are compatible with virtually all FDM/FFF 3D printers that use 1.75 mm filament, including:

Standard PLA Filaments (Basic, Matte, Silk, PLA Pro, HT-PLA)

  • Bambu Lab (A1, P1P, X1C, X1E) – Full high-speed support on Panchroma™ Basic PLA (up to 350 mm/s), Matte (up to 300 mm/s), and Silk (up to 250 mm/s)
  • Prusa (MK3S+, MK4, MINI) – Excellent adhesion on PEI and textured sheets, AMS/MMU compatible
  • Creality (Ender 3, Ender 5, K1 series) – Reliable performance with stock hotends, high-speed capable on K1
  • Ultimaker (S3, S5, S7) – Consistent extrusion and minimal clogging
  • FlashForge, Anycubic, Elegoo, and more – Works with direct and Bowden extruders

PLA-CF (Carbon Fiber-Reinforced)

  • Requires hardened steel nozzle (0.6 mm highly recommended, 0.4 mm hardened acceptable)
  • Not AMS/MMU compatible – Abrasive carbon fiber can damage soft gears in multi-material systems
  • Recommended printers: Bambu Lab (with hardened hotend), Prusa (with hardened nozzle), Creality K1 (with hardened nozzle upgrade)
  • Volumetric flow limit: Max 15 mm³/s to prevent clogging and ensure quality

Nozzle diameter:

  • Standard PLA: 0.4 mm recommended (0.2–0.6 mm compatible)
  • PLA-CF: 0.6 mm hardened steel highly recommended (0.4 mm hardened acceptable)

Bed adhesion: Blue tape, PEI, BuildTak, or glass with optional adhesive spray for large prints.

Ready to Start Printing?

Browse the full PLA filament collection to find the perfect material for your next project. From high-speed Panchroma™ Basic PLA to professional Panchroma™ Matte PLA, glossy Panchroma™ Silk PLA, tough Polymaker™ PLA Pro, heat-resistant Polymaker™ HT-PLA, and stiffness-enhanced PLA-CF, Polymaker has you covered with advanced, eco-conscious 3D printing filaments.

PLA FAQ

What is PLA filament?

PLA (polylactic acid) is a bioplastic-based thermoplastic derived from renewable resources like corn starch or sugarcane. It's one of the most popular 3D printing materials due to its ease of use, low printing temperatures, and minimal warping. wiki.polymaker

What's the difference between Panchroma™ Basic, Matte, and Silk PLA?

  • Panchroma™ Basic PLA has a standard glossy finish and is optimized for high-speed printing up to 350 mm/s—ideal for miniatures, cosplay, and everyday models. wiki.polymaker
  • Panchroma™ Matte PLA produces a smooth, non-reflective surface that hides layer lines—perfect for functional parts, display models, and professional-looking prints. It's slightly more abrasive than Basic PLA but doesn't require a hardened nozzle for occasional use. shop.polymaker
  • Panchroma™ Silk PLA features a high-gloss, silky shine that enhances visual appeal for decorative prints, cosplay props, and gifts. The upgraded formula improves layer adhesion and reduces clogging compared to generic silk PLA brands. wiki.polymaker

What's the difference between PLA Pro and HT-PLA?

  • Polymaker™ PLA Pro combines high rigidity with enhanced impact resistance, making it perfect for engineering parts that need to hold their shape while resisting cracks or chips. It bridges the gap between standard PLA and PolyMax PLA.
  • Polymaker™ HT-PLA offers exceptional heat resistance—up to 130°C when annealed—making it suitable for functional parts, tools, and components exposed to high temperatures. As printed, it has a Vicat softening temperature of ~152–156°C.

What is PLA-CF and when should I use it?

PLA-CF is PLA reinforced with 8% carbon fiber by weight, offering exceptional stiffness (Young's Modulus ~4950 MPa), dimensional stability, and a smooth matte surface finish. It's ideal for functional parts, jigs, fixtures, and components that require high rigidity. However, it's more brittle than standard PLA and requires a hardened steel nozzle (0.6 mm recommended). wiki.polymaker

Do I need a hardened nozzle for PLA-CF?

Yes. PLA-CF is abrasive due to the carbon fiber content and will quickly wear out brass nozzles. A hardened steel nozzle (0.6 mm highly recommended, 0.4 mm hardened acceptable) is required for reliable printing. Additionally, PLA-CF is not compatible with AMS/MMU systems due to potential gear wear. polymaker

Do I need to anneal HT-PLA?

Annealing is optional but recommended for maximum heat resistance. As printed, HT-PLA has a Vicat softening temperature of ~152–156°C and HDT of ~58–61°C. When annealed at 80–100°C for 30 minutes, HDT can exceed 107–150°C, allowing parts to withstand continuous use at elevated temperatures. wiki.polymaker

How should I anneal HT-PLA prints?

Place printed parts in an oven at 80–100°C for 30 minutes, then allow to cool slowly to room temperature. This increases crystallinity and improves heat deflection temperature (HDT) and dimensional stability.

Is PLA filament food safe?

While PLA itself is generally considered food-safe, 3D printed parts may harbor bacteria in layer lines and are not recommended for direct food contact unless post-processed and sealed with food-safe coatings. wiki.polymaker

Do I need to dry PLA filament before printing?

PLA is less hygroscopic than materials like PETG or Nylon, but it can absorb moisture over time. If you notice stringing, bubbling, or reduced print quality, dry your PLA at 55°C for 6 hours before use. This applies to all Panchroma™ and Polymaker™ PLA formulations. wiki.polymaker

How should I store PLA filament?

Store PLA in a cool, dry place away from direct sunlight. Use airtight containers with desiccant packs or vacuum-sealed bags to prevent moisture absorption, especially in humid environments. wiki.polymaker

What temperature should I print PLA at?

  • Panchroma™ Basic/Matte/Silk PLA: 190–230°C
  • Polymaker™ PLA Pro: 210–230°C
  • Polymaker™ HT-PLA: 210–230°C
  • PLA-CF: 190–230°C (increase to 220–230°C at higher volumetric flow rates)

Always refer to the specific product's technical data sheet for optimal settings. wiki.polymaker

Can PLA filament be recycled or composted?

PLA is technically biodegradable under industrial composting conditions (high heat and humidity), but it does not break down in home compost or landfills. Recycling options are limited; check with local facilities that accept PLA or consider filament recyclers like Printerior. wiki.polymaker

Is PLA filament toxic?

PLA is considered non-toxic and emits minimal fumes during printing compared to ABS or Nylon. However, it's still recommended to print in a well-ventilated area, especially for prolonged sessions. wiki.polymaker

Can I paint or post-process PLA prints?

Yes! PLA prints can be sanded, primed, and painted with acrylics or spray paints. Matte PLA (Panchroma™ Matte, PLA-CF) provides an excellent base for painting due to its non-reflective surface. HT-PLA parts can also be annealed post-printing for improved heat resistance and dimensional stability. wiki.polymaker