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金属陶瓷部件的熔融长丝制造(FFF)

Fused Filament Fabrication (FFF) of Metal-Ceramic Components.

作者信息

Abel Johannes, Scheithauer Uwe, Janics Thomas, Hampel Stefan, Cano Santiago, Müller-Köhn Axel, Günther Anne, Kukla Christian, Moritz Tassilo

机构信息

Fraunhofer Institute for Ceramic Technologies and Systems IKTS;

Fraunhofer Institute for Ceramic Technologies and Systems IKTS.

出版信息

J Vis Exp. 2019 Jan 11(143). doi: 10.3791/57693.

Abstract

Technical ceramics are widely used for industrial and research applications, as well as for consumer goods. Today, the demand for complex geometries with diverse customization options and favorable production methods is increasing continuously. With fused filament fabrication (FFF), it is possible to produce large and complex components quickly with high material efficiency. In FFF, a continuous thermoplastic filament is melted in a heated nozzle and deposited below. The computer-controlled print head is moved in order to build up the desired shape layer by layer. Investigations regarding printing of metals or ceramics are increasing more and more in research and industry. This study focuses on additive manufacturing (AM) with a multi-material approach to combine a metal (stainless steel) with a technical ceramic (zirconia: ZrO2). Combining these materials offers a broad variety of applications due to their different electrical and mechanical properties. The paper shows the main issues in preparation of the material and feedstock, device development, and printing of these composites.

摘要

工程陶瓷广泛应用于工业、研究以及消费品领域。如今,对具有多样定制选项和良好生产方法的复杂几何形状的需求持续增长。利用熔融沉积成型(FFF),能够以高材料效率快速生产大型复杂部件。在FFF中,连续的热塑性长丝在加热的喷嘴中熔化并沉积在下方。计算机控制的打印头移动,以便逐层构建所需形状。在研究和工业领域,关于金属或陶瓷打印的研究越来越多。本研究聚焦于采用多材料方法的增材制造(AM),将金属(不锈钢)与工程陶瓷(氧化锆:ZrO₂)结合。由于它们不同的电学和力学性能,将这些材料结合可提供广泛的应用。本文展示了这些复合材料在材料和原料制备、设备开发以及打印方面的主要问题。

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