TY - GEN
T1 - Mechanical Properties and Mechanical Model of Insulating Paper Modified by Doping with Micro/Nanocellulose
AU - Wang, Siyu
AU - Zhang, Daning
AU - Tian, Wenrui
AU - Zhai, Xinnan
AU - Yang, Dingqian
AU - Zhang, Guanjun
N1 - Publisher Copyright:
© Beijing Paike Culture Commu. Co., Ltd. 2026.
PY - 2026
Y1 - 2026
N2 - Micro/nanocellulose doped insulating paper will enhance the mechanical properties, but it possesses different aspect ratios and plays different effects in filled insulating paper. Therefore, in this paper, multiscale doped modified insulating papers with different mass fractions were prepared to explore their optimal matching, and analyze the modification mechanism of multiscale mixed doped insulating papers and their advantages. Meanwhile, based on the Halpin-Tsai model, the Young’s modulus prediction of multiscale doped system and single-scale doped insulating paper was realized, and the optimal ratio of multiscale mixed doping was derived based on the modified mechanical model. The experimental results show that this multiscale mixed doping modified insulating paper and the mechanical model are of great significance to improve the mechanical properties of insulating paper and its prediction.
AB - Micro/nanocellulose doped insulating paper will enhance the mechanical properties, but it possesses different aspect ratios and plays different effects in filled insulating paper. Therefore, in this paper, multiscale doped modified insulating papers with different mass fractions were prepared to explore their optimal matching, and analyze the modification mechanism of multiscale mixed doped insulating papers and their advantages. Meanwhile, based on the Halpin-Tsai model, the Young’s modulus prediction of multiscale doped system and single-scale doped insulating paper was realized, and the optimal ratio of multiscale mixed doping was derived based on the modified mechanical model. The experimental results show that this multiscale mixed doping modified insulating paper and the mechanical model are of great significance to improve the mechanical properties of insulating paper and its prediction.
KW - Halpin-Tasi model
KW - Multiscale doping system
KW - Nanocellulose
UR - https://www.scopus.com/pages/publications/105028352745
U2 - 10.1007/978-981-95-4278-9_58
DO - 10.1007/978-981-95-4278-9_58
M3 - 会议稿件
AN - SCOPUS:105028352745
SN - 9789819542772
T3 - Lecture Notes in Electrical Engineering
SP - 551
EP - 558
BT - The Proceedings of the 12th Frontier Academic Forum of Electrical Engineering (FAFEE2025) - Volume III
A2 - Yang, Qingxin
PB - Springer Science and Business Media Deutschland GmbH
T2 - 12th Frontier Academic Forum of Electrical Engineering, FAFEE 2025
Y2 - 23 May 2025 through 25 May 2025
ER -