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A new method of lifetime estimation for high-voltage insulating systems in rotating machines

机译:旋转机械高压绝缘系统寿命估算的新方法

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The stator wedge supporting material is used for diagnosing the state of the main insulation in rotating machines. The stator wedge is placed in a stator slot, and the material is aged using the same degradation conditions experienced by the bar winding insulating system itself. The possibility of easy replacement of the supporting material without causing any damage to the whole insulating system during device shutoff is a major advantage of this approach. The samples were tested with differential scanning calorimetry (DSC) and were prepared from isolated bars of a real hydroelectric generator (after 57,984 operation hours). The bar insulating system material (glass-mica-based) and the stator wedge material (laminated glass-fabric and laminated cellulose paper (paper-phenolic laminates) were tested. Additional laboratory thermal aging of the samples from both the bar winding insulating system and the supporting material was conducted to verify the suitability of the DSC method. Based on previous experience and on the thermal class of the insulating system (F − 155 °C), the aging temperature was set to 180 °C. Enthalpies were measured after 52, 70, 100 and 200 hours of aging. The samples from three bars (phase, zero and changed bar) were analyzed. Powdered samples from compacted bar insulation and stator wedge material were measured using DSC in a pure air atmosphere. The area of the first thermal oxidative peak (enthalpy) was evaluated. The experiment showed good agreement with the enthalpy results for the insulating system and the supporting material.
机译:定子楔形支撑材料用于诊断旋转电机中主绝缘的状态。将定子楔形物放置在定子槽中,并使用与条形绕组绝缘系统本身相同的降解条件对材料进行时效处理。这种方法的主要优点是可以轻松更换支撑材料,而不会在设备关闭期间对整个绝缘系统造成任何损坏。样品用差示扫描量热法(DSC)进行测试,并由一台真正的水力发电机的绝缘棒制备(运行57,984小时后)。测试了条形绝缘系统材料(玻璃云母基)和定子楔形材料(层压的玻璃纤维和层压纤维素纸(纸酚醛层压板)。根据先前的经验和绝缘系统的耐热等级(F-155°C),将老化温度设置为180°C,在52℃后测量焓分别经历了70、100、200小时的老化,分析了三个棒材(相,零和变化的棒材)的样品,在纯净的空气中使用DSC测量了压实的棒材绝缘材料和定子楔形材料的粉末状样品。首先评估了热氧化峰(焓),该实验与绝缘系统和支撑材料的焓结果吻合良好。

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