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Evaluation of insulation layer of silicon rubber cable joint with thermal ageing by ultrasonic detection

机译:超声检测评估热老化硅橡胶电缆接头绝缘层

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Cable joint insulation withstanding high temperature for a long period may induce unrecoverable damage, which may result in reduced insulation performance or even failure. Therefore, to assess and monitor the situation of insulation layer accurately is very important to the fabrication and operating reliability of cable joints. To simulate the thermal ageing of 220kV integrally prefabricated cable joint silicone rubber (SR) insulation layer, the accelerated thermal ageing tests of the cable joint SR insulation layer at 225° were carried out in this paper. An ultrasonic detection system for evaluation of insulation layer of aged cable joint was established. The dielectric characteristics, such as relative permittivity and breakdown strength, were measured by dielectric tests. Ultrasonic velocity characteristics and frequency domain characteristics were also investigated by ultrasonic detection. The results showed that, with increasing of ageing time, the dielectric performance (as destructive parameters) degraded gradually, and the ultrasonic velocity (as a non-destructive parameter of ultrasonic detection) decreased gradually. In addition, the DC component of ultrasonic spectrum of cable joint insulation layer decreased, but the other spectral peaks increased simultaneously. The correlation between ultrasonic velocity and dielectric performance can be quantified by fractional expression. Based on the amplitudes of the DC component and the main peak of ultrasonic spectrum, the of thermal ageing damage factor (TADF) was proposed and the correlation between TADF and dielectric performance was found to satisfy the Boltzmann distribution. The results confirmed that the ultrasonic velocity and the TADF were suitable to evaluate the thermal ageing state of SR insulation layer of cable joint. The ultrasonic detection method may offer a broad prospect for nondestructive evaluation and diagnosis of the ageing state of cable joint insulation layer.
机译:长时间承受高温的电缆接头绝缘可能会导致无法恢复的损坏,从而可能导致绝缘性能下降甚至出现故障。因此,准确评估和监测绝缘层的状况对于电缆接头的制造和操作可靠性非常重要。为了模拟220kV整体预制电缆接头硅橡胶绝缘层的热老化,本文在225°进行了电缆接头SR绝缘层的加速热老化试验。建立了用于评估老化电缆接头绝缘层的超声波检测系统。通过介电测试测量介电特性,例如相对介电常数和击穿强度。还通过超声检测研究了超声速度特性和频域特性。结果表明,随着老化时间的增加,介电性能(作为破坏性参数)逐渐降低,超声速度(作为超声检测的非破坏性参数)逐渐降低。另外,电缆接头绝缘层的超声波频谱的直流分量减小,而其他频谱峰值同时增大。超声速度和介电性能之间的相关性可以通过分数表达来量化。根据直流分量的幅值和超声谱图的主峰,提出了热老化损伤因子(TADF),并发现TADF与介电性能之间的相关性满足玻尔兹曼分布。结果表明,超声速度和TADF适用于评价电缆接头SR绝缘层的热老化状态。超声波检测方法为电缆接头绝缘层的老化状态的无损评估和诊断提供了广阔的前景。

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