SLA photocurable 3D printer, in many cases as additive manufacturing process, the first step involves the design 3D model by the CAD software. The generated CAD file is a digital representation of the desired object.
If they are not automatically generated, you must convert the CAD file to an STL file. Standard Subdivision Language (STL) or "Standard Triangle Language" is the native file format of stereolithography software created by Abert Consulting Group for 3D Systems in 1987. The STL file describes the surface geometry of 3D objects, ignoring Other common CAD model properties such as color and texture.
The pre-printer step is to feed the STL file to the 3D slicer software, such as Cura. These platforms are responsible for generating G code, which is the native language of 3D printers.
When the process begins, the laser "pushes" the first layer of print into the photosensitive resin. The liquid solidifies no matter where the laser hits. The laser is directed to the appropriate coordinates by a computer controlled mirror.
At this point, it is worth mentioning that most desktop SLA printers are upside down. That is to say, the laser points to the build platform, and the build platform gradually rises from the low position.
After the first layer, the platform is raised according to the layer thickness (typically about 0.1 mm) and the additional resin flows under the already printed portion. The laser then cures the next cross section and repeats the process until the entire part is completed. The resin that is not in contact with the laser remains in the barrel and can be reused.
After the material polymerization is completed, the platform rises from the tank and drains excess resin. At the end of the process, the model was removed from the platform, excess resin was washed and then placed in a UV oven for final curing. Post-press curing allows the object to reach the highest possible strength and become more stable.
As we mentioned earlier, a descendant of SLA is Digital Light Processing (DLP). Unlike SLAs, DLP uses a digital projector screen to flash a single image of each layer across the entire platform. Since the projector is a digital screen, each layer will consist of square pixels. Therefore, the resolution of the DLP printer corresponds to the pixel size, and for the SLA, it is the laser spot size.
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