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The Temperature Dependence of Insulation Mechanical Properties and its Effect on Interface Pressure in Cable Joints

机译:绝缘机械性能的温度依赖性及其对电缆接头界面压力的影响

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摘要

Contact pressure is a vital factor that controls the intefacial electrical breakdown strength. Loss of interface pressure between cable insulation and joint insulation must be avoided in practice to ensure a long life span of power cable joints.The contact pressure depends on the temperature profile in the bulk material the thermal characteristics and the mechanical properties of the insulation materials. In this paper, a mathematical model using the thermo-elastic equations was developed to estimate the contact pressure taking into account how the mechanical properties (elastic modulus and thermal expansion) change with temperature, along with a realistic radial temperature profile. Two different approaches are compared, one usingfmite element analysis and the other using a set of differential equations which may be solved without the needfor proprietary software.
机译:接触压力是控制细细电击强度的重要因素。在实践中必须避免电缆绝缘和联合绝缘之间的界面压力损失,以确保电力电缆接头的长寿命。接触压力取决于散装材料中的温度曲线的热特性和绝缘材料的机械性能。在本文中,开发了一种使用热弹性方程的数学模型来估计考虑机械性能(弹性模量和热膨胀)如何随温度变化的接触压力以及现实的径向温度曲线。比较了两种不同的方法,使用熔点元素分析,另一组可以解决,而其他可以解决而没有专有软件的差分方程。

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