方春华, 孙奥琪, 游海鑫, 夏荣, 王昱力, 胡涛. 基于非线性超声的电缆硅橡胶界面压力检测方法[J]. 高电压技术, 2024, 50(1): 313-321. DOI: 10.13336/j.1003-6520.hve.20230208
引用本文: 方春华, 孙奥琪, 游海鑫, 夏荣, 王昱力, 胡涛. 基于非线性超声的电缆硅橡胶界面压力检测方法[J]. 高电压技术, 2024, 50(1): 313-321. DOI: 10.13336/j.1003-6520.hve.20230208
FANG Chunhua, SUN Aoqi, YOU Haixin, XIA Rong, WANG Yuli, HU Tao. Interface Pressure Detection Method of Cable Silicone Rubber Based on Nonlinear Ultrasonic[J]. High Voltage Engineering, 2024, 50(1): 313-321. DOI: 10.13336/j.1003-6520.hve.20230208
Citation: FANG Chunhua, SUN Aoqi, YOU Haixin, XIA Rong, WANG Yuli, HU Tao. Interface Pressure Detection Method of Cable Silicone Rubber Based on Nonlinear Ultrasonic[J]. High Voltage Engineering, 2024, 50(1): 313-321. DOI: 10.13336/j.1003-6520.hve.20230208

基于非线性超声的电缆硅橡胶界面压力检测方法

Interface Pressure Detection Method of Cable Silicone Rubber Based on Nonlinear Ultrasonic

  • 摘要: 电缆附件与本体之间的界面压力对电缆长期稳定运行起决定性作用。针对压力传感器测量法会损坏界面绝缘特性的问题,提出一种基于非线性超声的电缆硅橡胶界面压力无损检测方法。首先对超声波在硅橡胶-交联聚乙烯界面的传播特性进行分析,得到非线性系数与界面压力的关系。然后基于脉冲反射法搭建非线性超声试验平台,以平板硅橡胶和交联聚乙烯为研究对象,对其界面压力进行非线性超声检测。理论与试验结果均表明,随界面压力增大,界面一次回波幅值减小,回波时间减小,非线性系数增加。该结果表明非线性超声可以有效评价电缆硅橡胶复合界面压力状态,为后续电缆附件曲面结构的界面压力检测提供有力支撑。

     

    Abstract: The interface pressure between a cable and its accessories plays a decisive role in the long-term stable operation of the cable. The pressure sensor measurement method can damage the interface insulation characteristics, thus a non-destructive testing method based on ultrasonic non-linear effects was proposed. Firstly, the propagation characteristics of ultrasonic waves at the silicone rubber-cross-linked polyethylene interface were analyzed. The relationship between the non-linear coefficient and the interfacial pressure was obtained. Then a non-linear ultrasonic test platform was built based on the pulse reflection method. Moreover, the interface pressure of flat silicone rubber and cross-linked polyethylene was examined by non-linear ultrasonic testing. Both theoretical and experimental results show that, as the interface pressure increases, the interface primary echo amplitude decreases, the echo time decreases, and the non-linear coefficient increases. The results show that non-linear ultrasound can effectively evaluate the interfacial pressure state of cable silicone rubber composite, which can provide strong support for the subsequent interfacial pressure detection of the curved structure of cable accessories.

     

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