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  2. Polylactic acid - Wikipedia

    en.wikipedia.org/wiki/Polylactic_acid

    PLA objects can be fabricated by 3D printing, casting, injection moulding, extrusion, machining, and solvent welding. PLA filament for use in 3D printing. PLA is used as a feedstock material in desktop fused filament fabrication by 3D printers, such as RepRap printers. [39] [40] PLA can be solvent welded using dichloromethane. [41]

  3. 3D printing filament - Wikipedia

    en.wikipedia.org/wiki/3D_printing_filament

    3D printing filament is the thermoplastic feedstock for fused deposition modeling 3D printers. There are many types of filament available with different properties. [1] Filament comes in a range of diameters, most commonly 1.75 mm and 2.85 mm, [2] with the latter often being confused with the less common 3 mm. [3]

  4. Fused filament fabrication - Wikipedia

    en.wikipedia.org/wiki/Fused_filament_fabrication

    Fused filament fabrication (FFF), also known as fused deposition modeling (with the trademarked acronym FDM), or filament freeform fabrication, is a 3D printing process that uses a continuous filament of a thermoplastic material. [1] Filament is fed from a large spool through a moving, heated printer extruder head, and is deposited on the ...

  5. File:Bambu Lab X1 Carbon printing in PLA filament.webm

    en.wikipedia.org/wiki/File:Bambu_Lab_X1_Carbon...

    Bambu Lab X1 Carbon printing with PLA filament, in real-time. Filmed using Samsung Galaxy S21 Ultra, and then converted to WEBM using FFmpeg (CRF 30, 2-pass). Date

  6. Multi-material 3D printing - Wikipedia

    en.wikipedia.org/wiki/Multi-material_3D_printing

    Fused Filament Fabrication (also known as Fused Deposition Modeling - FDM) describes the process of continuously extruding a line of thermoplastic material to form a three dimensional model. [1] The FFF process supports a variety of materials reaching from bio degradable ones like PLA to PETG, ABS and engineering grade materials like PEEK.

  7. Extruder (3D printing) - Wikipedia

    en.wikipedia.org/wiki/Extruder_(3D_printing)

    Bowden Extruders: works better with rigid filaments [5] such as PLA, ABS and PETG which are less likely to buckle while inside the bowden tube. Flexible filaments such as TPU will struggle with bowden extruders since it has a long path to get to the hotend, The friction inside the bowden tube and compressible nature of the filament will make it ...