Historically, the automotive industry has been using rapid prototyping being an important tool in the automotive parts design process. The extremely fast-paced automotive design cycles require an exceptionally fast prototyping system that may produce car parts fast and inexpensively.
The main objective of automotive prototyping is to understand quickly: how a new automotive product behaves in its natural working environment, before transferring the prototype to the production line. Often, mistakes are learned only after a new automotive part is launched. This is actually the main explanation for poor automotive parts design, from product mismatch, poor engineering and function or finish, and overpriced production. In order to accelerate the educational curve, before these costly automotive prototyping mistakes are manufactured, one must accelerate and facilitate feedback loops from tests in the lab and market trials.
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The benefits of 3D rapid prototyping model creation versus viewing a cad/cam model on a computer screen is palpable. Automotive parts engineers gather discuss the professionals and cons of a rapidly produced automotive parts model and discuss the professionals and cons of the style, because they pass it around, twisting and viewing the prototype, and determine if that's what they'd in mind. In this manner, problems get solved at the start, before going to the assembly line! Once determined that the automotive prototype design is really a go, the model will then be provided for a die maker.
Working together with selection of rapid prototyping equipment, automotive prototyping engineers utilize most advanced 3D printers, in their quest for perfect form, function and utility. Employed in advanced manufacturing centers, the automotive engineers use the technology to verify what they are doing, and, equally important, to truly save tremendous levels of time, and money.
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