Sepehri Sobhan, Trey Stacy, Lake Kajsa, Cumming Carl, Johansson Christer
Digital Systems, RISE Research Institutes of Sweden, SE-411 33 Gothenburg, Sweden.
Materials and Production, RISE Research Institutes of Sweden, SE-164 40 Kista, Sweden.
Materials (Basel). 2023 Aug 4;16(15):5471. doi: 10.3390/ma16155471.
This study investigates the use of eddy-current technology and impedance spectroscopy in sensing the change in rubber properties after it is exposed to accelerated thermal aging. The thermal aging process, by application of temperature and pressure over time, of ethylene propylene diene monomer (EPDM) rubbers containing both carbon black (CB) and graphene are investigated. Both eddy-current sensing and electrical impedance measurement techniques were used for electromagnetic analysis. Both methods measure the in- and out-of-phase responses as a function of excitation frequency at room temperature. The measurements were performed before and after the aging process. The electrical percolation threshold was detected in the rubber samples by varying the CB content from 0 to 40 wt%. In the rubber sample containing 30 wt% CB, 0-5 wt% of the CB was replaced with graphene flakes. The substitution of graphene for CB in the EPDM rubber formulation provided an enhanced eddy-current and electrical impedance response. The findings demonstrate the feasibility of employing electromagnetic analysis techniques to investigate the extent of aging.
本研究探讨了利用涡流技术和阻抗谱来检测橡胶在加速热老化后性能的变化。研究了含有炭黑(CB)和石墨烯的乙丙三元橡胶(EPDM)在温度和压力随时间作用下的热老化过程。涡流传感和电阻抗测量技术都用于电磁分析。两种方法都在室温下测量作为激励频率函数的同相和异相响应。在老化过程前后进行测量。通过将CB含量从0变化到40 wt%,检测橡胶样品中的电渗流阈值。在含有30 wt% CB的橡胶样品中,用石墨烯薄片替代0 - 5 wt%的CB。在EPDM橡胶配方中用石墨烯替代CB提供了增强的涡流和电阻抗响应。这些发现证明了采用电磁分析技术来研究老化程度的可行性。