0.4mm Titanium Alloy High Temperature V6 Gem Nozzle Compatible PETG/ABS/PEI/Nylonfor Prusa I3 3D Printer

SKU
1592737
In stock
DKK532.50 DKK426.00
-
+
0.4mm Titanium Alloy High Temperature V6 Gem Nozzle Compatible PETG/ABS/PEI/Nylonfor Prusa I3 3D Printer is available to buy in increments of 1
Overview
0.4mm Titanium Alloy High Temperature V6 Gem Nozzle Compatible PETG/ABS/PEI/Nylonfor Prusa I3 3D Printer
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Overview:
 
Durable, non-stick, high-temperature nozzles. This copper alloy is resistant to high temperatures, and won't start to soften or anneal until it is far beyond 500 ° C, making it ideal for high-temperature 3D printing that other nozzles are unable to handle. These nozzles are fully integrated with V6 hot end, Titan Hotend extruder, BMG Hotend extruder and are compatible with Prusa 3D printers
 
Detailed descriptions:
 
These nozzles are designed for extreme high temperatures. Made of special copper with a high-temperature alloy with softening point well above 500 ° C, and with great-increased thermal conductivity, these copper nozzles are ideal for high-temperature applications, while it works perfectly with everyday fiber such as PLA, ABS, and spoolWorks edge.
 
● In addition to the high temperature, these nozzles have advanced nickel-based plating, which significantly reduces plastic adhesion to the nozzle. It is great for everyday fiber keeping things clean and shiny but is especially important at temperatures above 300 ° C where silicone socks cannot be used.
 
● Copper has more than 3x the thermal conductivity of brass and copper alloy that we use, from hardened and treated to reduce the oxidation that occurs in copper at high temperatures. The higher thermal conductivity will also slightly increase heat times and can provide more temperature control.
 
● This copper alloy is resistant to high temperatures, and will not start to soften or anneal until far beyond 500 ° C, making it ideal for high-temperature printing that other nozzles are unable to handle.

Package Included:

1 x 0.4mm nozzle 




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