The Study of Crystallization Behavior, Microcellular Structure and Thermal Properties of Glass-Fiber/Polycarbonate Composites

Author:

Wang Xinchao1,Sun Yapeng1,Hu Jiale1,Wu Lan1,Geng Tie1,Guo Yonggang1,Zhao Chenhao1,Dong Binbin2,Liu Chuntai2

Affiliation:

1. School of Mechanical & Electrical Engineering, Henan Provincial Engineering Research Centre of Automotive Composite Materials, Henan University of Technology, Zhengzhou 450001, China

2. National Engineering Research Center for Advanced Polymer Processing Technologies, Zhengzhou University, Zhengzhou 450002, China

Abstract

Polycarbonate (PC) foam is a versatile material with excellent properties, but its low thermal stability limits its application in high-temperature environments. The aim of this study was to improve the thermal stability of PC foam by adding glass fibers (GF) and to investigate the effect of GF on PC crystallization behavior and PC foam cell morphology. This study was motivated by the need to improve the performance of PC foams in various industries, such as construction, automotive, and medical. To achieve this goal, PC/GF composites were prepared by extrusion, and PC/GF composite foams were produced using a batch foaming process with supercritical carbon dioxide (SC-CO2) as the blowing agent. The results showed that the addition of GF accelerated the SC-CO2-induced crystallization stability of PC and significantly increased the cell density to 4.6 cells/cm3. In addition, the thermal stability of PC/GF foam was improved, with a significant increase in the residual carbon rate at 700 °C and a lower weight loss rate than PC matrix. Overall, this study highlights the potential of GF as a PC foam reinforcement and its effect on thermal and structural properties, providing guidance for industrial production and applications.

Funder

Natural Science Foundation of Henan Province

Key Laboratory of Materials processing and Mold

National Natural Science Foundation of China

Training Program of Young Key Teachers in Henan University of Technology

Innovative Funds Plan of Henan University of Technology

Science and Technology Project of Henan Province

Excellent Program for Overseas Students in 2022

Open Project of State Key Laboratory of Solid Lubrication

Excellent Youth Project of Henan Province

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference43 articles.

1. Notch sensitivity of polycarbonate and toughened polycarbonate;Cho;J. Appl. Polym. Sci.,2003

2. Density and cell morphology of rigid foam PVC-clay nanocomposites;Alian;Polym.-Plast. Technol. Eng.,2010

3. Weingart, N., Raps, D., Kuhnigk, J., Klein, A., and Altstädt, V. (2020). Expanded polycarbonate (Epc)—A new generation of high-temperature engineering bead foams. Polymers, 12.

4. Laad, M.S. (2020). Polymer Science and Innovative Applications, Elsevier.

5. Kyriacos, D. (2017). Brydson’s Plastics Materials, Elsevier.

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