Chen Qiyu, Yang Lijun, Yu Hua, He Yuxin, Liu Hong, Wang Xuan
State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing 400044, China.
State Grid Shanxi Electric Power Research Institute, Taiyuan 030001, China.
Polymers (Basel). 2023 Jan 3;15(1):247. doi: 10.3390/polym15010247.
The power transformer is vital to the reliability of the power grid which is most commonly insulated with Kraft paper and immersed in mineral oil, among which the aged state of the paper is mainly correlated to the operating life of the transformer. Degree of polymerization (DP) is a direct parameter to assess the aged condition of insulating paper, but existing DP measurement by viscosity methods are destructive and complicated. In this paper, terahertz time-domain spectroscopy (THz-TDS) was introduced to reach rapid, non-destructive detection of the DP of insulating paper. The absorption spectra of insulating paper show that characteristic peak regions at 1.8 and 2.23 THz both exhibit a log-linear quantitative relationship with DP, and their universalities are confirmed by conducting the above relationship on different types of insulating paper. Fourier transform infrared spectroscopy (FTIR) analysis and molecular dynamics modeling further revealed that 1.8 and 2.23 THz were favorably associated with the growth of water-cellulose hydrogen bond strength and amorphous cellulose, respectively. This paper demonstrates the viability of applying THz-TDS to the non-destructive detection of DP in insulating paper and assigned the vibration modes of the characteristic absorption peaks.
电力变压器对于电网的可靠性至关重要,其最常用牛皮纸绝缘并浸渍在矿物油中,其中纸张的老化状态主要与变压器的运行寿命相关。聚合度(DP)是评估绝缘纸老化状况的直接参数,但现有的通过粘度法测量DP具有破坏性且复杂。本文引入太赫兹时域光谱(THz-TDS)来实现对绝缘纸DP的快速、无损检测。绝缘纸的吸收光谱表明,1.8和2.23太赫兹处的特征峰区域均与DP呈现对数线性定量关系,并且通过对不同类型绝缘纸进行上述关系验证了其普遍性。傅里叶变换红外光谱(FTIR)分析和分子动力学建模进一步表明,1.8和2.23太赫兹分别与水 - 纤维素氢键强度的增长和无定形纤维素密切相关。本文证明了将THz-TDS应用于绝缘纸DP无损检测的可行性,并确定了特征吸收峰的振动模式。