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3D printing speed measures the amount of manufactured material over a given time period (/ ), where ... Normal speed Maximum speed (claimed) DLP/SLA: 20-36 mm/h. [1]
3D printing, or additive manufacturing, is the construction of a three-dimensional object from a CAD model or a digital 3D model. [1] [2] [3] It can be done in a variety of processes in which material is deposited, joined or solidified under computer control, [4] with the material being added together (such as plastics, liquids or powder grains being fused), typically layer by layer.
Makerbot Replicator 2 Desktop 3D Printer: FFF: 285 mm × 153 mm × 155 mm 11.2 in × 6.0 in × 6.1 in 100 μm Makerbot Replicator+ Desktop 3D Printer: FFF: 295 mm × 195 mm × 165 mm 11.6 in × 7.7 in × 6.5 in 100 μm Makerbot Replicator 2X Experimental 3D Printer: FFF: Makerbot Replicator Desktop 3D Printer: FFF
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.
This technology was first developed at the Massachusetts Institute of Technology and patented in 1993. In 1996, the ExOne Company was granted an exclusive field-of-use patent for the technology, [2] while Z Corporation, which was later acquired by 3D Systems, [3] obtained a non-exclusive patent for use of the technology for metal casting purposes. [4]
A desktop FFF printer made by Stratasys. Fused deposition modeling was developed by S. Scott Crump, co-founder of Stratasys, in 1988. [6] [7] With the 2009 expiration of the patent on this technology, [8] people could use this type of printing without paying Stratasys for the right to do so, opening up commercial, DIY, and open-source 3D printer applications.
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