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首页> 外文期刊>Colloid and polymer science >A NUMERICAL KRAMERS-KRONIG TRANSFORM FOR THE CALCULATION OF DIELECTRIC RELAXATION LOSSES FREE FROM OHMIC CONDUCTION LOSSES
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A NUMERICAL KRAMERS-KRONIG TRANSFORM FOR THE CALCULATION OF DIELECTRIC RELAXATION LOSSES FREE FROM OHMIC CONDUCTION LOSSES

机译:计算不含电导率损失的介电弛豫损失的数值Kramers-Kronig变换

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摘要

A numerical Kramers-Kronig transform is described which allows the calculation of dielectric relaxation losses from dielectric constant data measured at a limited set of frequencies differing by a factor of 2. Conversion formulas for both the central frequencies and for frequencies near the edges of the experimental frequency window are derived. The approach used can be extended easily to measurement frequencies with a different logarithmic spacing. Using this conversion, relaxation and dissipative, conduction losses can be separated. In this way Ohmic conduction precesses and simultaneously occurring relaxation processes like dipole or space-charge relaxations can be analysed independently. The results of some simulations and of calculations on experimental data for poly(vinyl-chloride) are used to illustrate the potentials of the epsilon' to epsilon '' conversion. [References: 17]
机译:描述了一种数值Kramers-Kronig变换,该变换允许从在一组相差2倍的有限频率下测得的介电常数数据计算介电弛豫损耗。中心频率和实验边缘附近频率的转换公式频率窗口被导出。所使用的方法可以轻松扩展到具有不同对数间距的测量频率。使用这种转换,松弛和耗散,可以将传导损耗分开。这样,就可以独立地分析欧姆传导的进动和同时发生的弛豫过程,例如偶极子或空间电荷弛豫。聚氯乙烯的一些模拟结果和实验数据的计算结果被用来说明ε'向ε'转化的潜力。 [参考:17]

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