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NEW NON-DESTRUCTIVE CONDITION MONITORING TECHNIQUES FOR ON-SITE ASSESSMENT OF LOW-VOLTAGE CABLES

机译:低压电缆现场评估的新无损状态监测技术

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The number of techniques available for on-site monitoring of low-voltage cables at nuclear plants is limited because of the requirement from station personnel to use non-destructive and non-intrusive techniques. This paper summarizes the results obtained to date using two new non-destructive methods.The first technique is based on the indentation of the cable insulation or cable jacket material and the study of post-indentation parameters to characterize the visco-elastic properties of the material tested. The novelty of the technique consists of measuring the time taken by the polymeric material to recover a set portion of the initial deformation and using this duration as a material degradation indicator. The technique can be used locally on the insulation of hook-up cables, on the insulation at the termination of jacketed cables, or directly on cable jackets.The second technique is based on the measurement of electrical dissipation factors (or tan delta) in the insulating material. A broadband frequency tan delta analyser was used to measure electrical dissipation factors at various frequencies, and identify the frequency ranges showing increased sensitivity to cable degradation. Specific electrodes and measurement methods were developed for practical on-site condition monitoring work. The measurement of electrical dissipation factors can be used to assess the local degradation of cable insulation in hook-up cables and global degradation of multi-pair conductor cables. When used on multi-pairconductor cables, the technique presents the advantage of providing a global indication of the cable condition.
机译:由于电站人员要求使用非破坏性和非侵入性技术,因此用于核电站低压电缆的现场监控的技术数量有限。本文总结了迄今为止使用两种新的非破坏性方法获得的结果。 第一种技术基于电缆绝缘材料或电缆护套材料的压痕以及压痕后参数的研究,以表征测试材料的粘弹性。该技术的新颖性在于测量聚合材料恢复初始变形的设定部分所花费的时间,并将该持续时间用作材料降解指标。该技术可局部用于连接电缆的绝缘层,护套电缆末端的绝缘层上,或直接在电缆护套上使用。 第二种技术基于绝缘材料中电耗散因数(或损耗角正切)的测量。宽带频率tanδ分析仪用于测量各种频率下的电耗因数,并确定显示出对电缆劣化敏感度增加的频率范围。为实际的现场状态监测工作开发了特定的电极和测量方法。耗散因数的测量可用于评估连接电缆中电缆绝缘的局部退化和多对导体电缆的整体退化。在多对上使用时 导体电缆,该技术具有提供电缆状况全局指示的优势。

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