@inproceedings{be3bf97d6047413ea66866ebd29fc4a4,
title = "Preliminary Measurement Research on Piezo-Stimulated Currents of Polymers",
abstract = "For polymeric materials, it is essential to study the microstructural properties including space charge distribution and trap energy distribution properties corresponding to their macroscopic electrical properties. By analogy with the principles of the thermally stimulated current (TSC) technique, this paper proposes a piezo-stimulated current (Pie-SC) method using pressure as a variable, to test the microscopic properties of polymeric materials. A fully polarized nylon-6 specimen is subjected to a short-circuit discharge at high pressure (200MPa), followed by a pressure variation and measurement of the current signal released on the specimen, also known as the PieSC signal. Reproducible pressure-excited current signals were measured and the activation enthalpy and activation energy were calculated.",
keywords = "Pie-SC, activation energy, activation enthalpy, polymeric materials",
author = "Tianhua Lv and Jiaan Shi and Xuan Wang and Yewen Zhang and Yang Xu",
note = "Publisher Copyright: {\textcopyright} 2023 IEEE.; 4th IEEE International Conference on Electrical Materials and Power Equipment, ICEMPE 2023 ; Conference date: 07-05-2023 Through 10-05-2023",
year = "2023",
doi = "10.1109/ICEMPE57831.2023.10139493",
language = "英语",
series = "2023 IEEE 4th International Conference on Electrical Materials and Power Equipment, ICEMPE 2023",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
booktitle = "2023 IEEE 4th International Conference on Electrical Materials and Power Equipment, ICEMPE 2023",
}