This is a Pre-order item(s), the order will be delivered in 30-60 days.

Heat-Resistant Silicone Cover for Extruder Nozzle Heat Block Sleeve: Protect Your 3D Printer From Heat Damage.

– Protect your 3D printer’s extruder nozzle from molten plastic leaks, dust, and burnt fingertips.
– Durable silicone construction withstands high temperatures up to 260°C (500°F).
– Easy to install and remove thanks to its flexible design.
– Snug fit ensures secure coverage and prevents nozzle clogging.
– Prevents filament from sticking to the nozzle and causing printing issues.
– Available in a range of sizes and colors to match your printer’s nozzle and style.

1,276

Shipping cost extra*
Description

Silicone Cover for Extruder Nozzle

Product Features:

– Protects the extruder nozzle from dust, debris, and other contaminants.

– Made of food-grade, heat-resistant silicone

– Easy to install and replace.

– Suitable for most 3D printers with a nozzle diameter of 1.75mm or 3.0mm.

– Helps prevent filament clogging, which can cause printing errors and affect print quality.

– Provides a thermal barrier, helping to reduce heat transfer to the upper parts of the hot-end assembly, improving printing stability.

– Available in a variety of colors to match your printer’s aesthetics, adding a touch of personalization to your setup.

– Durable and long-lasting, made from premium silicone that can withstand high temperatures and wear and tear.

– Helps improve the overall performance and lifespan of the extruder nozzle.

  • 3dp.com – A comprehensive resource for all things 3D printing, including guides, tutorials, and reviews.
  • Simplify3D – A popular 3D printing software offering a troubleshooting guide for print quality issues.
  • PrusaPrinters.org – An extensive knowledge base for Prusa 3D printers, including a section on extruder nozzle maintenance.
  • SKU: 266324081835 Category: Tag:

    RECENT PRODUCTS

    ALL CATEGORIES

    Heat-Resistant Silicone Cover for Extruder Nozzle Heat Block Sleeve: Protect Your 3D Printer From Heat Damage.