Customizable Extruder Plate

Allows users to add personal surfaces or textures for unique prints.
$7.40
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Features two different surface types, one for adhesion and one for easy release.

A specially coated surface that repels materials for hassle-free cleaning.

Designed for simple assembly and loading, perfect for quick changes.

Made from sustainable materials for environmentally conscious printing.

A specially designed plate that allows for easy removal of prints without damage.

A bendable steel plate that allows easy print removal through slight flexing.

Smooth surface that provides excellent adhesion for a variety of filaments.

Adds a fun element to your build surface while keeping prints secure.

Engineered for precision, providing detailed and accurate layer adhesion.

Able to withstand up to 300°C, perfect for advanced filament materials.

A magnetic attachment system that makes swapping plates fast and convenient.

Heavy-duty aluminum plate for enhanced stability and consistency during printing.

Optimized surface for printing flexible filaments without warping.

A polyetherimide coated surface that ensures strong adhesion and easy release.

Flexible silicone plate that supports multiple print materials with lesser warping.

Features a unique texture that enhances adhesion for easier print handling.

Ultra-thin glass plate offering both smoothness and durability for high-quality prints.

Larger plate suitable for big projects and multi-part prints.

Combines the benefits of aluminum and laminate for optimal print adhesion and thermal performance.

A standard plate for use with various filament types, ideal for beginners.

Ideal for high conductivity and thermal management during printing with conductive filaments.

A popular surface material that combines excellent adhesion with easy part removal.

Reinforced plate for improved durability and even heat distribution.

A non-stick surface for higher temperature filaments and better heat retention.

Perfect for 3D prints requiring electrical conductivity integrated into the surface.