NASA Logo

NTRS

NTRS - NASA Technical Reports Server

Press Enter or click the Search button to begin your search.

Back to Results
A Review of Direct Ink Writing of Polymer Derived CeramicsWith the growing demand for materials capable of withstanding extreme temperatures and pressures, ceramic components with exceptional corrosion resistance and reliable mechanical properties have experienced a significant surge in demand. However, traditional ceramic forming methods involve high-temperatures and energy-intensive processes that often struggle to produce complex parts or composites efficiently. Polymer-Derived Ceramics (PDCs) offer a transformative solution by using polymeric precursors that can be converted into a wide variety of silicon-based and non-silicon-based ceramics through heat treatment. The polymeric nature of PDC precursors enables the fabrication of geometrically intricate components using conventional polymer-forming techniques at significantly lower processing temperatures. Furthermore, PDCs are well-suited for additive manufacturing (AM), allowing the production of complex structural and functional components through cost-effective, low-temperature processes. By leveraging the diverse properties of PDC materials – each with unique advantages and limitations – manufacturers can optimise performance for specific applications. This review provides an overview of the types of PDCs developed to date and their broad range of applications. Specifically, it delves into the Direct Ink Writing (DIW) process, exploring its rheological requirements and the critical role of fillers in tailoring the rheological properties of polymeric precursors to meet the specific demands of DIW.
Document ID
20260007754
Acquisition Source
Langley Research Center
Document Type
Reprint (Version printed in journal)
Authors
Victoria Bishop
(Michigan Technological University Houghton, United States)
Saket Chand Mathur
(Wichita State University Wichita, United States)
Nhu Nguyen
(Wichita State University Wichita, United States)
Bhisham Sharma
(Michigan Technological University Houghton, United States)
Mary Drouin
(Spirit AeroSystems (United States) Wichita, United States)
Bin Li
(Wichita State University Wichita, United States)
Cheol Park
(Langley Research Center Hampton, United States)
Wei Wei
(Michigan Technological University Houghton, United States)
Date Acquired
August 12, 2026
Publication Date
May 18, 2025
Publication Information
Publication: Virtual and Physical Prototyping
Publisher: Taylor and Francis
Volume: 20
Issue: 1
Issue Publication Date: January 1, 2025
ISSN: 1745-2759
e-ISSN: 1745-2767
Subject Category
Chemistry and Materials (General)
Funding Number(s)
WBS: 833011.02.07.8328.26
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
NASA Technical Management
No Preview Available