Additive Manufacturing of Advanced Ceramics Using Preceramic Polymers

Author:

Han Jinchen1ORCID,Liu Chang2ORCID,Bradford-Vialva Robyn L.3,Klosterman Donald A.1ORCID,Cao Li1

Affiliation:

1. Department of Chemical and Materials Engineering, University of Dayton, Dayton, OH 45469, USA

2. Technical Center, Nippon Paint Automotive Americas, Inc., Cleveland, OH 44102, USA

3. Air Force Research Laboratory (AFRL/RXMD), Manufacturing & Industrial Technologies Division, Wright-Patterson AFB, Dayton, OH 45433, USA

Abstract

Ceramic materials are used in various industrial applications, as they possess exceptional physical, chemical, thermal, mechanical, electrical, magnetic, and optical properties. Ceramic structural components, especially those with highly complex structures and shapes, are difficult to fabricate with conventional methods, such as sintering and hot isostatic pressing (HIP). The use of preceramic polymers has many advantages, such as excellent processibility, easy shape change, and tailorable composition for fabricating high-performance ceramic components. Additive manufacturing (AM) is an evolving manufacturing technique that can be used to construct complex and intricate structural components. Integrating polymer-derived ceramics and AM techniques has drawn significant attention, as it overcomes the limitations and challenges of conventional fabrication approaches. This review discusses the current research that used AM technologies to fabricate ceramic articles from preceramic feedstock materials, and it demonstrates that AM processes are effective and versatile approaches for fabricating ceramic components. The future of producing ceramics using preceramic feedstock materials for AM processes is also discussed at the end.

Funder

University of Dayton

Publisher

MDPI AG

Subject

General Materials Science

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