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Influence of accelerated aging on dielectric properties of extruded Nylon 6 film

机译:加速老化对挤出尼龙6薄膜介电性能的影响

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Thermal degradation is one major cause of wire aging, increasing the risk of electrical failure. Further, exposure of wire insulation to fluids commonly used on aircraft may also compromise the dielectric performance of wire insulation. In this paper, the dielectric properties of Nylon 6, a common wire insulation material, are investigated under various conditions of accelerated aging. Thermal exposure below the melting point (220 °C) for up to 20 hours was performed on extruded Nylon 6 films, and chemical exposure was conducted for up to 8 days in six fluids: jet fuel, deicing fluid, hydraulic fluid, cleaning fluid, isopropyl alcohol and distilled water. Real permittivity (ε') and dissipation factor (D) of aged samples were measured using parallel plate electrodes and an Agilent E4980A LCR meter over frequency range from 100 Hz to 1 MHz in an ambient environment (23 °C). The results show that both ε' and D decrease significantly in a short thermal exposure time (1 hour) but do not exhibit significant time dependence in the longer term. The dielectric relaxation of Nylon 6 changes according to the type of fluid in which it is immersed, falling approximately into two classes according to whether or not the fluid is polar in nature. Following immersion in non-polar fluids (hydraulic fluid and jet fuel) the observed change in ε' and D is small, whereas large increases in these parameters are observed following exposure to polar fluids: water, isopropanol, cleaning fluid and deicing fluid. Dielectric breakdown strength was observed to reduce dramatically following exposure to polar fluids.
机译:热降解是电线老化的主要原因之一,增加了电气故障的风险。此外,使电线绝缘层暴露于飞机上通常使用的流体也可能损害电线绝缘层的介电性能。在本文中,研究了尼龙6(一种常见的电线绝缘材料)在各种加速老化条件下的介电性能。在挤出的尼龙6薄膜上进行低于熔点(220°C)的热暴露长达20小时,并在以下六种流体中进行了长达8天的化学暴露:喷气燃料,除冰剂,液压油,清洁剂,异丙醇和蒸馏水。使用平行板电极和Agilent E4980A LCR测量仪,在环境温度(23°C)下从100 Hz到1 MHz的频率范围内,测量老化样品的实际介电常数(ε')和耗散因数(D)。结果表明,ε'和D都在较短的热暴露时间内(1小时)显着降低,但从长远来看却没有显着的时间依赖性。尼龙6的介电弛豫根据其所浸入的流体的类型而变化,根据流体的性质是否为极性大致分为两类。浸入非极性流体(液压油和喷气燃料)后,观察到的ε'和D变化很小,而暴露于极性流体(水,异丙醇,清洁液和除冰液)后,这些参数的变化却很大。观察到电介质击穿强度在暴露于极性流体后急剧降低。

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