@inproceedings{c338358399414374b7d47a560c3340ca,
title = "Effect of quenching treatment on morphology and properties of eco-friendly polypropylene copolymer for cable insulation",
abstract = "Polypropylene (PP) based cable insulating material has raised great attention due to the recyclability and superior dielectric properties. In this paper, isotactic PP (iPP) as a common commercial PP and ethylene-propylene copolymer (EPC) with natural cooling(-2°C/min) and quenching process (- 90°C/min) were prepared to investigate the role of quenching on morphology and properties of iPP and EPC. It is found that the elongation at break of quenched iPP and EPC significantly increased by 105\% and 121\%, respectively. In addition, the breakdown strength of iPP decrease 6\% while that of EPC increase 13\% after quenching treatment. It is shown by XRD results that {\ss}-crystal is introduced in both quenched iPP and EPC specimens/The parallel lamellas of {\ss}-crystal will slide under the external force, which can result in the increased elongation at break. Moreover, the crystallinity of quenched iPP decreased by 1 4 \% which can cause the expansion of amorphous regions and free volume. The energy accumulation of carriers under applied electric field will be significantly enhanced, which can result in the decreased breakdown strength. As for quenched EPC, non-cry stallizable ethylene-propylene copolymer segments tends to be restricted in limited dimensions to form dispersed amorphous microspheres. Deep traps which are introduced by rubber microspheres are considered to be an important reason for the increased breakdown strength.",
keywords = "Electrical property, Mechanical property, Polypropylene, Quenching",
author = "Y. Liu and K. Yang and Y. Tian and Liu, \{Y. T.\} and Li, \{J. Y.\} and Jing, \{Z. H.\}",
note = "Publisher Copyright: {\textcopyright} 2020 Institute of Electrical Engineers of Japan. All rights reserved.; 2020 International Symposium on Electrical Insulating Materials, ISEIM 2020 ; Conference date: 13-09-2020 Through 17-09-2020",
year = "2020",
month = sep,
day = "13",
language = "英语",
series = "Proceedings of the International Symposium on Electrical Insulating Materials",
publisher = "Institute of Electrical Engineers of Japan",
pages = "261--264",
booktitle = "Proceedings of 2020 International Symposium on Electrical Insulating Materials, ISEIM 2020",
}