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A correlation between gas evolution in electrically stressed oils and other estimates of oil aromatic content

机译:电应力油中的气体逸出与其他油芳烃含量估算值之间的相关性

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Ability to absorb hydrogen under electrical stress has long been considered an important property of cable oils, and various laboratory test techniques to measure this property have been developed (4,6,8,17,19,20). However, all these direct measurements of the tendency of an oil to evolve or absorb gas require complicated apparatus with high voltages. Such apparatus is suitable for referee and research purposes, but a simpler method for predicting gassing tendencies would be valuable for control and screening purposes. The gassing tendency has been generally related to the aromatic content of the oil. For example, specific optical dispersion has been related to gas absorption (24), is now being used in oil continuity tests, and an ASTM standard is being prepared. However, specific optical dispersion is increased not only by aromatic content but by the extent to which aromatic bonds are conjugated. For example: equation It seems unlikely that such conjugation would affect hydrogen absorption to the same extent.
机译:长期以来,在电应力下吸收氢的能力一直被认为是电缆油的一项重要性能,并且已经开发出各种测量该性能的实验室测试技术(4、6、8、17、19、20)。然而,所有这些对油放出或吸收气体的趋势的直接测量都需要具有高电压的复杂设备。这样的装置适合于裁判和研究目的,但是用于预测放气趋势的更简单的方法对于控制和筛选目的将是有价值的。放气趋势通常与油的芳族含量有关。例如,特定的光学色散与气体吸收有关(24),现在正用于油的连续性测试中,并且正在准备ASTM标准。然而,特定的光学色散不仅通过芳族化合物含量增加,而且通过芳族键被共轭的程度增加。例如:方程式这种共轭似乎不太可能在相同程度上影响氢的吸收。

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