@inproceedings{33d8b6428759450a93d793e3c33798bf,
title = "Dielectric Properties and 3D Printing Fesibility of UV Curable Polymer Composites",
abstract = "In this study, UV curable polymer composites are investigated to explore their applicability in building the dielectrics with functionally graded material (d-FGM) using stereolithographic 3D printing technology. On the prepared test samples, several dielectric properties, i.e., permittivity, dielectric loss and breakdown strength, are characterized. 3D printing feasibility of the polymer composites are also investigated by measuring the viscosity and curing depth. Finally, influences of the ceramic filler's type, volume fraction and particle morphology on the dielectric properties and 3D printing feasibility are discussed.",
keywords = "3D Printing, Dielectric Properties, Functionally graded material, Polymer Composites, UV Curable Resin",
author = "Li, \{Wen Dong\} and Zhang, \{Li Yuan\} and Chao Wang and Li, \{Xiao Ran\} and Man Xu and Zhang, \{Guan Jun\}",
note = "Publisher Copyright: {\textcopyright} 2018 IEEE.; 2018 IEEE International Conference on High Voltage Engineering and Application, ICHVE 2018 ; Conference date: 10-09-2018 Through 13-09-2018",
year = "2018",
month = jul,
day = "2",
doi = "10.1109/ICHVE.2018.8642258",
language = "英语",
series = "ICHVE 2018 - 2018 IEEE International Conference on High Voltage Engineering and Application",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
booktitle = "ICHVE 2018 - 2018 IEEE International Conference on High Voltage Engineering and Application",
}