Over the years technology has certainly evolved; creating possibilities beyond what our forefathers ever thought possible. In years past, color, speed and quality of picture were the only factors that mattered with printing. However, now technological advances enables printing of molds and prototypes in three dimensional (3D) form.
3D printing, also called additive manufacturing, utilizes a digital file to create solid objects made from photopolymers. The digital design is created as a CAD (computer Aided Design) file using a 3D modeling program. 3D modeling programs are developed by mathematical representation through specialized software. Depending on the software used, the surface of the 3D object can be living or inanimate. When the computerized object is printed, it is printed in levels or layers using UV (ultra violet) technology. When using UV technology the light flashes for the layers to be placed to form the object.
Another way to print 3D objects is by scanning them through a 3D scanner. 3D scanners use different properties and technologies to print the object. Scanners use Modulated light, volumetric scanning, or time-of-light and many more to print a replica thats not exact but captures the most important features.
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The creation of 3D printing affords medical engineers and architects the ability to create working models of prototypes. Medical engineers creates the design for print, but often ships the actual printing job to medical manufacturers of raw materials. Many aspects of medical manufacturing are regulated by the Food and Drug Administration (FDA). These regulations demand that one seeking printed 3D prototypes for medical manufacturing choose a reputable and FDA compliant company. Contact Aspen Sales to assist with finding a FDA compliant medical manufacturer.
(Contributing Author: Anita Turner)
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