Conductive polymer composite material has been widely used in many industrial fields. Regarding fibrillar composite material, since the fiber’s orientation and distribution affect the properties of product, how the orientation and distribution are controlled is an important key to improve its properties. In this study, the external magnetic field was applied to injection molding for controlling the orientated behavior of magnetic fiber during the filling process. In addition, the fiber orientation and through-plane conductivity was investigated by means of different injection speeds with or without external magnetic field. The influence of magnetic field on the orientation of fiber was observed using the scanning electron microscope. Results from this paper are expected to provide the important references for future study of conductive polymer composite material by using magnetic-assisted injection molding.
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5 February 2019
PROCEEDINGS OF PPS-34: The 34th International Conference of the Polymer Processing Society - Conference Papers
21–25 May 2018
Taipei, Taiwan
Research Article|
February 05 2019
The influence of magnetic fiber orientation on the electric properties of conductive polymer composite material by using magnetic-assisted injection molding
Shia-Chung Chen;
Shia-Chung Chen
1
Department of Mechanical Engineering, Chung Yuan Christian University
, Taiwan
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Chen-Yuan Chung;
Chen-Yuan Chung
*
2
Department of Mechanical Engineering, National Central University
, Taiwan
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Ya-Lin Tseng
Ya-Lin Tseng
1
Department of Mechanical Engineering, Chung Yuan Christian University
, Taiwan
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*
Email: cxc474@case.edu
AIP Conf. Proc. 2065, 040001 (2019)
Citation
Shia-Chung Chen, Chen-Yuan Chung, Ya-Lin Tseng; The influence of magnetic fiber orientation on the electric properties of conductive polymer composite material by using magnetic-assisted injection molding. AIP Conf. Proc. 5 February 2019; 2065 (1): 040001. https://doi.org/10.1063/1.5088321
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