Direct laser additive manufacturing of high performance oxide ceramics: A state-of-the-art review

Прямое лазерное аддитивное производство высокопрочных оксидных керамик: обзор современного состояния
Konrad Wegener, Christos G. Aneziris, Marco Grasso, Bianca Maria Colosimo, Thomas Graule, Stefan Pfeiffer, Kevin Florio, Dario Puccio
2021-05-19

directed energy depositionhigh performance oxide ceramicslaser additive manufacturingpowder bed fusionprocess monitoring
The implementation of additive manufacturing for ceramics is more challenging than for other material classes, since most of the shaping methods require polymer binder. Laser additive manufacturing (LAM) could offer a new binder-free consolidation route, since it is capable of processing ceramics in a direct manner without post-processing. However, laser processing of ceramics, especially high performance oxide ceramics, is limited by low thermal shock resistance, weak densification and low light absorptance at room temperature; particularly in the visible or near-infrared range. An extensive review focusing only on LAM (powder bed fusion – laser beam and directed energy deposition) of high performance oxide ceramics is currently lacking. This state-of-the-art review gives a detailed summary and critical analysis about process technologies, part properties, open challenges and process monitoring in the field of oxide ceramics. Improvements in accuracy and mechanical strength are proposed that could open LAM of oxide ceramics to new fields.
1
LAM of high-performance oxide ceramics is limited by low thermal shock resistance, weak densification, and low light absorptance at room temperature in visible/NIR wavelengths.
2
Laser additive manufacturing (LAM) offers a binder-free, direct consolidation route for ceramics, avoiding post-processing required by polymer-binder methods.
3
Proposed improvements in accuracy and mechanical strength could enable broader application of LAM for oxide ceramics in new fields.
4
The review provides a detailed summary and critical analysis of process technologies, part properties, open challenges, and process monitoring specific to oxide ceramics.
5
There is currently no extensive state-of-the-art review focused solely on LAM (powder bed fusion and directed energy deposition) of high-performance oxide ceramics.

Laser additive manufacturing (LAM) of high-performance oxide ceramics

Process technologies, part properties, open challenges and process monitoring affecting binder-free direct laser consolidation (powder bed fusion and directed energy deposition) of high-performance oxide ceramics, including accuracy and mechanical strength improvements

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Publication Date
2021-05-19
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Authors
Konrad Wegener
Christos G. Aneziris
Marco Grasso
Bianca Maria Colosimo
Thomas Graule
Stefan Pfeiffer
Kevin Florio
Dario Puccio
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