Polymeric Fibers with High Strength and High Toughness at Extreme Temperatures

Author:

Cheng Chuyun1,Liao Xiaojian2ORCID,Silva Juliana Martins de Souza e3,Conceição Andre L. C.4,Carlos Dias4,Agarwal Seema5,Hou Haoqing1,Greiner Andreas5,Feng Wei2ORCID

Affiliation:

1. College of Chemistry and Chemical Engineering Jiangxi Normal University Nanchang Jiangxi 330022 P. R. China

2. School of Materials Science and Engineering Tianjin University Tianjin 300072 P. R. China

3. Fraunhofer Institute for Microstructure of Materials and Systems IMWS Walter‐Hülse Str. 1 06120 Halle (Saale) Germany

4. Deutsches Elektronen‐Synchrotron (DESY) Notkestrasse 85 22607 Hamburg Germany

5. Macromolecular Chemistry and Bavarian Polymer Institute University of Bayreuth 95440 Bayreuth Germany

Abstract

AbstractDeveloping strong and simultaneously tough polymeric materials with excellent thermal stability and mechanical performance even under extreme temperatures is truly a challenge. In a disruptive progress, continuous polymeric yarns are developed with a combination of high tensile strength of (1145 ± 44) MPa and ultrahigh toughness of (350 ± 24) J g−1 and high thermomechanical properties from −196 to 200 °C. The comprehensive thermomechanical performance of this yarn surpasses that of previously developed polymeric materials and dragline spider silks. The results demonstrate that the molecular structure of polyimide (PI) with the incorporation of flexible‐rigid macromolecular, hierarchically spiral‐oriented fibers, and high glass transition temperature (248 °C) are keys for the yarn's notable comprehensive performance in thermomechanical properties. The materials are ideal for technical components exposed to high thermomechanical loadings, such as those encountered in spacecraft or automotive engineering for safety‐critical applications.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Wiley

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