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Abridgment of power factor and dielectric constant in viscous dielectrics

机译:粘性电介质中功率因数和介电常数的放弃

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This paper gives the results of a study of the peculiar variation with temperature and frequency of the dielectric constant and power factor of rosin, rosin oil, and castor oil. It includes data showing, at several frequencies, the relation of dielectric constant and power factor to the composition of vulcanized rubber. Electrical double refraction in rosin at different frequencies and temperatures is discussed in relation to its behavior as a dielectric. It is shown that the viscosity is decisive factor controlling both the electrical and optical behavior The facts are important in themselves but it is possible to interpret them by a modern physical theory, the Debye1 dipole theory, which it is believed has not hitherto been applied to commercial dielectrics. On this theory, the anomalous change of dielectric constant and power factor with temperature and frequency is attributed not to impurities or heterogeneity of structure but to molecules containing electric doublets which try to orient themselves in an electric field. The rotation of the dipole molecules in a viscous medium gives rise to frictional heat loss expressed as power factor, and also to a contribution to the dielectric constant which vanishes when the dipoles are prevented from responding by too great viscosity or too high frequency. For the sake of intelligibility, first an outline of the dipole theory is presented and then the experimental results are discussed on the basis of that theory.
机译:本文给出了关于松香,松香油和蓖麻油的介电常数和功率因数随温度和频率的特殊变化的研究结果。它包括在几个频率下显示介电常数和功率因数与硫化橡胶成分之间关系的数据。讨论了松香在不同频率和温度下的电双折射与电介质行为的关系。结果表明,粘度是控制电和光学行为的决定性因素。事实本身很重要,但可以通过现代物理理论Debye 1 偶极子理论对其进行解释。据信迄今尚未应用于商业电介质。根据该理论,介电常数和功率因数随温度和频率的异常变化不是归因于结构的杂质或异质性,而是归因于包含试图使自己在电场中定向的双电荷分子。偶极子分子在粘性介质中的旋转会产生摩擦热损耗,以功率因数表示,并且还会对介电常数做出贡献,当阻止偶极子因粘度太大或频率太高而无法响应时,介电常数就会消失。为了易于理解,首先介绍了偶极子理论的概述,然后在该理论的基础上讨论了实验结果。

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