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Lithography-based ceramic manufacturing (LCM) - Viscosity and cleaning as two quality influencing steps in the process chain of printing green parts

机译:基于光刻的陶瓷制造(LCM) - 粘度和清洁作为印刷绿色零件过程链中的两个质量影响步骤

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摘要

The advantages of suspension based Additive Manufacturing (AM), e.g. the lithography-based ceramic manufacturing (LCM), are high structural resolution, and compared to other available AM techniques, the manufacturing of dense (>99%) ceramic components with high performance. This novel manufacturing technique permits innovative designs, new types of ceramic components, and offers a range of new applications; like micro reactors, catalyst supporting structures or heat exchangers, as well as cutting edge biomedical devices and personalized medical products. Some examples of personalized medical products are customised ceramic knee implants or custom spinal fusion implants. Producing these implants using LCM would allow product offerings not possible before. However, the LCM process chain includes several open points, which have to be solved, in order to get high quality end results. In this paper, the development of suspensions (curable slurries) based on different binders, and the procedures for cleaning printed parts are thoroughly considered. (C) 2017 Elsevier Ltd. All rights reserved.
机译:基于悬浮的添加剂制造(AM)的优点,例如,基于光刻的陶瓷制造(LCM)是高结构分辨率,与其他可用AM技术相比,具有高性能高(> 99%)陶瓷组分的制造。这项新颖的制造技术允许创新的设计,新型陶瓷组件,并提供一系列新应用;与微反应器一样,催化剂支撑结构或热交换器,以及切削刃生物医学装置和个性化医疗产品。个性化医疗产品的一些例子是定制陶瓷膝盖植入物或定制脊柱融合植入物。使用LCM生产这些植入物将允许以前不可能提供产品。然而,LCM过程链包括几个开口点,必须解决,以便获得高质量的最终结果。本文彻底考虑了基于不同粘合剂的悬浮液(可固化浆料)的开发,以及清洁印刷部件的程序。 (c)2017 Elsevier Ltd.保留所有权利。

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