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  2. Gyroid - Wikipedia

    en.wikipedia.org/wiki/Gyroid

    The gyroid pattern has also found use in 3D printing for lightweight internal structures, due to its high strength, combined with speed and ease of printing using an FDM 3D printer. [ 21 ] [ 22 ] In a study in silico , researchers from the university hospital Charité in Berlin investigated the potential of gyroid architecture when used as a ...

  3. Hilbert curve - Wikipedia

    en.wikipedia.org/wiki/Hilbert_curve

    The slicer software used to convert 3D models into toolpaths for a 3D printer typically has the Hilbert curve as an option for an infill pattern.

  4. 3D printing speed - Wikipedia

    en.wikipedia.org/wiki/3D_Printing_speed

    Generation of the tool path plan by the software (including infill and infill pattern) Warming up and loading of support and build materials; The setting of the x-y and z axes; Diagnostics, cleaning or additional testing; Build stage, which is the actual print time after the prepared data are transferred to the printer for manufacturing. It can ...

  5. Stereolithography - Wikipedia

    en.wikipedia.org/wiki/Stereolithography

    Stereolithography (SLA or SL; also known as vat photopolymerisation, [1] optical fabrication, photo-solidification, or resin printing) is a form of 3D printing technology used for creating models, prototypes, patterns, and production parts in a layer by layer fashion using photochemical processes by which light causes chemical monomers and ...

  6. 3D printing processes - Wikipedia

    en.wikipedia.org/wiki/3D_printing_processes

    Computer-aided design (CAD) model used for 3D printing. The manual modeling process of preparing geometric data for 3D computer graphics is similar to plastic arts such as sculpting. 3D scanning is a process of collecting digital data on the shape and appearance of a real object, creating a digital model based on it.

  7. Microstructures in 3D printing - Wikipedia

    en.wikipedia.org/wiki/Microstructures_in_3D_printing

    The use of microstructures in 3D printing, where the thickness of each strut scale of tens of microns ranges from 0.2mm to 0.5mm, has the capabilities necessary to change the physical properties of objects (metamaterials) such as: elasticity, resistance, and hardness. [1]

  8. Slicer (3D printing) - Wikipedia

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

    The proportion of these structures, known as 'infill density', is a key parameter that can be adjusted in the slicer. Support structure (in blue) generated by Cura software. Supports: Since most 3D printing processes build objects layer by layer, from the bottom up, each new layer is deposited directly on top of the previous one. Consequently ...

  9. 4D printing - Wikipedia

    en.wikipedia.org/wiki/4D_printing

    Stereolithography is a 3D-printing technique that uses photopolymerization to bind substrate that has been laid layer upon layer, creating a polymeric network. As opposed to fused-deposition modeling, where the extruded material hardens immediately to form layers, 4D printing is fundamentally based in stereolithography, where in most cases ultraviolet light is used to cure the layered ...

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