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Anycubic – Red PLA FilamentAnycubic – Red PLA Filament

Anycubic – Red PLA Filament

$17.99

Make sure this fits by entering your model number.
Accuracy & Consistency, Anycubic 3D Printer PLA filament of 1.75mm diameter, Minimum dimensional tolerance ±0.02mm, which making filament outflow smoother, came out homogeneous. The low shrinkage, stable printing dimensions make the fusion between the layers was very good to obtain an even better bridging result. You don’t worry the diameter changes a lot then the feed rate is disrupted with thicker and thinner layers at all
Neat Spool & Premium Quality, The 3D Printing PLA filament was neat on the roll and leaves the spool easily without any crossed turns. Resulting in less thread pulling and twisting, no clogging, super under-extruding. It produces the cleanest, least stringing prints of any of the filaments you have used whilst resisting warping and also providing the glossiest finish. Without a single jam and adhesion issue which meeting your demands for printing freely

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Description

970 x 300-2970 x 300-2

<a href=”javascript:void(0)” data-csa-c-func-deps=”aui-da-a-expander-toggle” data-csa-c-type=”widget” data-csa-interaction-events=”click” aria-expanded=”false” role=”button” data-action=”a-expander-toggle” class=”a-declarative” data-a-expander-toggle=”out of the country. A simpler, smarter and more practical philosophy has been applied to create high-quality 3D printers to meet professional and daily life needs.

Our goal is “The most well liked 3D printer brand” based on quality products, fast service, and innovative functions, to toughen living quality and contribute to social development.

How to use the PLA filament?

1. The filament tray is installed on the filament rack of the 3D printer. you want to heat the print head.

2. Cut the filament head into a spire shape for easy penetration into the guide tube and feed motor bore.

3. Manually push the filament through the Teflon tubing till the hotend and there will have to be filament melt through the nozzle.

  • Material: PLA
  • Wire diameter: 1.75mm±0.02mm
  • Length: 340m
  • Net weight: 2.2lbs
  • Hardness HRC105-110 (Rockwell hardness)
  • Printing temperature: 374-446℉
  • Hot bed temperature: no heating/122-176℉
  • Tensile strength: ≥55Mpa
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Smooth Squeeze

The wire diameter of the material is 1.75mm±0.02mm, which ensures uniform and smooth wire output and helps to toughen printing accuracy

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Starch Raw Materials

Anycubic PLA is made of starch raw materials extracted from renewable plant resources such as corn. This can be a new type of renewable material

300 x 300-RE-WH300 x 300-RE-WH

Surface smooth

The surface of the model printed with this material is very smooth and there are no bubbles

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Neat Spool

The silk threads are arranged neatly, without the risk of knotting that making printing more comfortable

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300 x 300-RE-WH300 x 300-RE-WH
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Mega S 3d printers-1 Mega Pro-1 Vyper FDM 3D Printer with Smart Auxiliary Leveling Mega X 3d printing-1 chrion
Mega S Mega Pro Vyper Mega X Chiron
Printing Technology FDM FDM & Laser Engraving FDM FDM FDM
Heated Build Plate
Build Volume 8.27” x 8.27” x 8.07” 8.27” x 8.27” x 8.07” 9.6″ x 9.6″ x 10.2″ 11.81” × 11.81” × 12” 15.75” x 15.75” x 17.71”
Materials PLA, TPU, ABS, HIPS, PETG, Wood PLA, TPU, ABS, HIPS, PETG, Wood PLA, TPU, ABS, HIPS, PETG, Wood PLA, TPU, ABS, HIPS, PETG, Wood PLA, TPU, ABS, HIPS, PETG, Wood
Leveling Type Manual Assist Manual Auto Leveling Manual Semi-auto Leveling
Connectivity SD Card & USB cable SD Card & USB cable SD Card & USB cable SD Card & USB cable SD Card & USB cable
Layer Resolution 0.05-0.3mm 0.05-0.3mm ±0.1mm 0.05-0.3mm 0.05-0.3mm
Max Heatbed Temp 110°C 100°C 110°C 90°C 100°C
Max Extruder Temp 260°C 260°C 260°C 250°C 250°C
Printing Speed 20-100mm/s(Recommended 60mm/s) 20-100mm/s(Recommended 60mm/s) <180mm/s (recommended 80-100mm/s) 20-100mm/s(Recommended 60mm/s) 20-100mm/s(Recommended 60mm/s)

Make sure this fits by entering your model number.
Accuracy & Consistency, Anycubic 3D Printer PLA filament of 1.75mm diameter, Minimum dimensional tolerance ±0.02mm, which making filament outflow smoother, came out homogeneous. The low shrinkage, stable printing dimensions make the fusion between the layers was very good to obtain an even better bridging result. You do not be disturbed the diameter changes a lot then the feed rate is disrupted with thicker and thinner layers at all
Neat Spool & Premium Quality, The 3D Printing PLA filament was neat on the roll and leaves the spool easily without any crossed turns. Resulting in less thread pulling and twisting, no clogging, super under-extruding. It produces the cleanest, least stringing prints of any of the filaments you have used while resisting warping and also providing the glossiest finish. Without a single jam and adhesion issue which meeting your demands for printing freely
Clog-Free & Bubble-Free, Designed and Manufactured with Clog-Free patent to guarantee a smooth and stable printing experience with our PLA refills. Completely dried for 24 hours before packaging and vacuum sealed with desiccants in nylon re-bag, enable much smoother and more stable printing. Larger spool inner diameter design makes feeding smoother
Eco-Friendly & Wide Compatibility, Made from starch raw materials derived from renewable plant resources, PLA filament boasts complete biodegradation and lower melting temperature, even does not need a heated bed. No odor, no pollution and non-toxic right through the printing. Anycubic PLA Filament Compatible perfectly with most FDM 3D Printers and 3D Pens that use 1.75MM filament in the marketplace, such as Prusa, Makerbot, MK3, Ender 3, CR 10, Mega, Chiron, Monoprice FlashForge and more
Filament Installation, 1. Install the spool on the spool holder of a 3D printer, and preheat the nozzle of the 3D printer. 2. Cut the filament tip diagonally, and guide it through the extruder and feeding tube. 3. Manually push the filament through the feeding tube to the nozzle, until the filament melt through the nozzle. Note: When installing and changing filament, we highly suggest to preheat the nozzle firstly to reduce the nozzle block risk

Additional information

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