THE BUILD PLATE GLUE

NANO POLYMER ADHESIVE - Voted Best Choice by 3D Printing Professionals Worldwide

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Nano Polymer Main
NPA FEATURES

Features & Benefits

Nano Polymer Adhesive revolutionizes bed adhesion by offering a reliable solution for even the most challenging 3D printing materials.

Whether you're printing with PEEK at 400°C or PLA at 200°C, this adhesive delivers clean results every time, ensuring your prints stick when hot and release when cool.

NPA FEATURES

Universal Filament Compatibility

  • Advanced Materials: PEEK, ULTEM™, PPSU, PEI, PSU (Say goodbye to frustrating delamination!)
  • Everyday Filaments: Nylon, ABS, ASA, PLA, PETG (Consistent, reliable adhesion for all your projects!)

Unrivaled Surface Versatility

Works flawlessly on virtually any FDM 3D printer build surface:

  • Borosilicate and Ceramic Glass
  • PCB, FR4, Garolite, Carbon Fiber
  • Creality Glass (non-coated), Fiberglass
  • BuildTak™, PEI, WhamBam, Flex Plates, Kapton Tape
  • Powder-coated PEI sheets

Key Benefits: Why Nano Polymer Adhesive is Your Best Choice

  • Eliminates warping and lifting, even with large, high-performance filaments, ensuring perfect first layers and completed prints.
  • Safe, non-toxic and organic formula – better for you and your workshop.
  • Dries clear and leaves absolutely no residue on your prints or build plate, saving you cleanup time.
  • More effective and less messy than traditional glue sticks, hairspray, or unreliable homemade solutions.
  • Easy to apply (just a thin layer!) and effortless to clean with water or isopropyl alcohol.
  • 100% money-back guarantee if you’re not satisfied – print with confidence!

How to use Nano Polymer

How to Apply Nano Polymer Adhesive

Achieving perfect bed adhesion is easy with Nano Polymer Adhesive. Follow these simple steps:

  1. Clean Your Surface: Ensure your print surface is free of oils and debris. Use water, Windex, or isopropyl alcohol for best results.
  2. Apply a Thin Layer: Shake the bottle well. Apply a thin, even layer over your desired build area. A little goes a long way!
  3. Calibrate Z-Offset: Carefully calibrate your first layer height. Proper Z-offset is crucial for optimal adhesion and easy part release.
  4. Start Printing: Initiate your print and watch as your first layer adheres flawlessly.
  5. Part Removal: Follow our temperature guidance below for effortless and safe part removal.

Temperature Tips
How to apply nano
Carbon fiber buildplate

Optimized Release: Temperature Guidelines

Nano Polymer Adhesive delivers strong adhesion at high temperatures and effortless part release when cooled — or even while hot for high-temperature materials.

For High-Temperature Materials (>300ºC Extruder Temp)

Remove parts while the plate is still **HOT**. Materials like PEEK, ULTEM, or high-temp PEI cool rapidly and can cause your build plate to crack due to extreme thermal contraction if not removed quickly.

Pro Tip: For these demanding prints, consider using carbon fiber or composite plates to mitigate the risk of glass breakage.

For Low-Temperature Materials (<300ºC Extruder Temp)

Let the plate cool completely. PLA, PETG, ABS, and Nylon prints will usually release on their own with a satisfying 'pop' as the plate cools. For any stubborn parts, a small amount of water applied around the base of the part can help with release.

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IMPORTANT SAFETY:

Caution When Printing on Glass

While Nano Polymer Adhesive provides incredible grip, certain filaments can still pose a risk to bare glass surfaces due to their high thermal contraction. **ABS and PETG are particularly known to chip or crack glass even without adhesive.** Please observe the following precautions:

  • Always use a protective layer (Kapton tape, PEI sheet, etc.) on bare glass surfaces when printing with high-contraction materials.
  • Avoid crushing your first layer – do not offset your Z-axis too low. A perfect Z-offset is key!
  • Remove high-temperature parts while the bed is still hot to reduce stress from excessive contraction during cooling.

Not compatible with:

POM (Delrin), Polypropylene (PP). For these niche materials, specialized solutions may be required.

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