Investigation of Electrical Properties of TiO2/EPDM Composites with Different Morphologies
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Abstract
In this work, TiO2 nanofibers (TiO2 NFs) with micron-nano size are prepared via electrospinning, and composites with TiO2 nanoparticles (TiO2 NPs) and TiO2 NFs as fillers are prepared using EPDM as the matrix. The effect of TiO2 with different morphologies on the electrical properties of the EPDM matrix has been comparatively analyzed and systematically investigated. The results show that the TiO2 NFs/EPDM exhibit nonlinear conductivity at a lower content compared to TiO2 NPs/EPDM composites. The threshold electric field of 18 wt.% TiO2 NFs/EPDM is 10.8 kV/mm and the nonlinear coefficient is 2.77. With the content of TiO2 NPs and TiO2 NFs increases, the breakdown field strength of the composites gradually decreases. At the same content, the breakdown strength of TiO2 NFs/EPDM is slightly lower than TiO2 NPs/EPDM; the dielectric constant and dielectric loss of TiO2 NFs/EPDM composites are slightly higher than that of TiO2 NPs/EPDM composites. The simulation results show that the 18 wt.% TiO2 NFs/EPDM can better homogenize the electric field, reduce the electric field at the end of the shielding tube, and improve the reliability of the safe operation of cable accessories. This work provides an effective method of preparing electric field graded materials.
Keywords
TiO2; Different morphologies; EPDM Rubber; Electrical properties
Speaker
Xubin Wang
Harbin University of Science and Technology School of Electrical and Electronic Engineering

Submission Author
Xubin Wang Harbin University of Science and Technology School of Electrical and Electronic Engineering
Tiandong Zhang Harbin University of Science and Technology
Changhai Zhang Harbin University of Science and Technology
Qingguo Chi Harbin University of Science and Technology
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    Sep 25

    2022

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    Sep 29

    2022

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