Mineral oil lifetime estimation using activation energy

L. Badicu, L. Dumitran, P. Notingher, R. Setnescu, T. Setnescu
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引用次数: 15

Abstract

Lifetime estimation of mineral oil is based on IEC 60216-1/2001, using accelerated thermal ageing at three temperatures), method which requires a long experimental time. In order to reduce the experimental times, this paper proposes a simpler method to draw the lifetime curve by determining an experimental point (carrying out only a thermal ageing at the highest temperature - which requires the least time) and curve slope (based on the activation energy of oxidation reaction). Assuming the volume resistivity and the loss factor as diagnostic factors, their variation curves with ageing time were drawn, and the lifetime values were calculated. Using differential calorimetry measurements (DSC curves) for four heating rates, the activation energy value Wa of oxidation reactions was obtained. Knowing the Wa value and the ageing time τ to achieve the end of life criterion for thermal ageing at the highest temperature (155 °C), the D3 lifetime value was determined and compared with D1 and D2 values obtained by accelerated thermal method at three temperatures. Finally is showed that, the differences between D3 and D1,2 values are relatively reduced and the method based on activation energy obtained by DSC, can be used to assess the lifetime of mineral oil.
利用活化能估算矿物油寿命
矿物油的寿命估计是基于IEC 60216-1/2001,使用加速热老化(在三个温度下),这需要很长的实验时间。为了减少实验次数,本文提出了一种更简单的绘制寿命曲线的方法,即确定实验点(仅在最高温度下进行热老化,所需时间最少)和曲线斜率(根据氧化反应的活化能)。以体积电阻率和损耗因子为诊断因子,绘制其随老化时间的变化曲线,计算寿命值。采用差示量热法(DSC曲线)测定了四种加热速率下氧化反应的活化能Wa。已知在最高温度(155℃)达到热老化终点的Wa值和老化时间τ,确定了D3的寿命值,并与加速热法在三个温度下获得的D1和D2值进行了比较。结果表明,D3与D1,2值之间的差异相对减小,基于DSC得到的活化能的方法可以用来评价矿物油的寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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