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Microstereolithography: a Review

机译:微立体光刻技术

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摘要

Microstereolithography is a technology at the interface of the microengineering and rapid prototyping domains. It has evolved from the stereolithography technique, and is also based on a light-induced layer-stacking manufacturing. As the resolution of the microstereolithography technique is far better than the one of rapid prototyping technologies, this technique is of particular interest in the microengineering domain where its 3D capability allows the production of components no other microfabrication technique can create. The first developments of the microstereolithography technique have started in 1993 and different research teams have developed machines since, using different approaches. This paper reviews the major microstereolithography processes developed until now. Microstereolithography is starting to be a commercially available manufacturing process. As the market for miniaturized products grows rapidly, there is an increasing need for high-resolution small size prototype parts. If the production of small mechanical components is the first commercial application of microstereolithography, this technology can also produce useful components for the microrobotic, microfluidic, microsystems and biomedical fields. Current research in the microstereolithography field is focused on using ceramic composites as material to manufacture complex three-dimensional parts that can be sintered to produce pure alumina microcomponents.
机译:微立体光刻技术是微工程和快速原型设计领域的接口。它是从立体光刻技术发展而来的,并且还基于光诱导的层堆叠制造。由于微立体光刻技术的分辨率远远优于快速原型技术之一,因此该技术在微工程领域特别受关注,因为其3D功能可以生产其他微加工技术无法创造的组件。微立体光刻技术的第一项发展始于1993年,此后,不同的研究团队使用不同的方法开发了机器。本文回顾了迄今为止开发的主要微立体光刻工艺。微立体光刻术已开始成为可商购的制造工艺。随着小型产品市场的快速增长,对高分辨率小尺寸原型零件的需求日益增长。如果小型机械部件的生产是微立体光刻的第一个商业应用,那么该技术还可以为微机器人,微流体,微系统和生物医学领域生产有用的部件。微立体光刻领域的当前研究集中在使用陶瓷复合材料作为材料来制造复杂的三维零件,这些零件可以烧结以生产纯氧化铝微组件。

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