Hot end with SiC nozzle, 0.4 mm, 1 unit(s)

Catalog nr. 39Y5.1
Raise3D

Volume: 1 pc(s)
Value Packs: 1 piece
Price:
Sale price€246,20
Ask quote for bulk order

Description

Hot end with SiC nozzle 0,4 mm is a replacement hot-end assembly for Raise3D Pro3 and Pro3 HS series fused-filament printers. It features a silicon carbide (SiC) nozzle with a 0,4 mm orifice, intended for extrusion workflows where a hard nozzle material is preferred over standard brass. Supplied as 1 pc, the complete hot end lets technicians swap the heated unit in one operation when nozzle wear or material changeovers demand a fresh assembly. The 0,4 mm SiC tip supports controlled bead geometry for detailed or standard-resolution prints on compatible Pro3-family machines. Series-specific design maintains mechanical and thermal interface alignment with Pro3 and Pro3 HS platforms. This spare part is available from manufacturer Raise3D in the conventional 3D-printing accessories range. Laboratories and technical workshops can stock the matched SiC hot end to sustain print consistency and reduce unplanned downtime during maintenance of Pro3 and Pro3 HS systems used for prototyping and research fabrication.

This article is part of 3D printers, accessories & spare parts, in 3D printing & bioprinting.

Key features

  • Pack size: 1 pc
  • Nozzle material: SiC
  • Nozzle diameter: 0,4 mm
  • Compatibility: Pro3 and Pro3 HS series
  • Product type: Hot end spare part

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Hot end with SiC nozzle, 0.4 mm, 1 unit(s) is the article on this page. Luminix Health distributes Raise3D for laboratory use. It sits in 3D printers, accessories & spare parts, inside 3D printing & bioprinting, in Lab instruments.

These are the printers themselves and the nozzles, beds and build plates that wear out. Nozzle diameter decides detail against speed. A spare nozzle for a different extruder thread does not fit. The printer's build volume is the largest object it can make.

A laboratory 3D printer builds a solid from a filament or a resin, layer by layer, when a shape is needed and a catalogue part does not exist. Bioprinting uses a bioink that contains, or will contain, living cells. The material decides the chemistry of the object and whether a cell will tolerate it. A filament that is only described as plastic is not a specification. Cell work around bioinks is discussed in the WHO biosafety topic and the papers are on PubMed.

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