Preparation of carbon fiber-reinforced polyimide composites via in situ induction heating

Author:

Liu Chang Wei1,Qu Chun Yan12,Han Lei3,Wang De Zhi12,Xiao Wan Bao12,Hou Xiang1

Affiliation:

1. Institute of Petrochemistry, Heilongjiang Academy of Sciences, Harbin, China

2. Institute of Advanced Technology, Heilongjiang Academy of Sciences, Harbin, China

3. Hongqi Hospital, Mudanjiang Medical University, Jiamusi, China

Abstract

Induction heating, a direct and contactless heating method, is generally more rapid and energetically more efficient than other heating methods used. In this work, we report the high-temperature imidization of carbon fiber/polyimide (PI) composites using an in situ induction heating method. Furthermore, we compare the advantages of the method to a conventional thermal procedure. The formed composites feature almost identical imidization rates, glass transition temperatures, and thermal oxidative stabilities cured at the same heating temperatures using a different heating process. Upon doping with ferriferous oxide, the ability of the magnetic nanoparticles in an alternating current field was studied to further drive the heating process and increase the rising and cooling time. The in situ induction heating process proves to be a powerful method for the high-temperature polymerization of high-performance thermoplastic composites, particularly for a PI matrix.

Publisher

SAGE Publications

Subject

Materials Chemistry,Organic Chemistry,Polymers and Plastics

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