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The development of polythene as a high-frequency dielectric

机译:聚乙烯作为高频电介质的发展

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摘要

The paper is mainly concerned with the power factor of polythene (the high polymer of ethylene), which, being normally of the order of 0.00015-0.0003, renders the material highly suitable as a high-frequency dielectric. It has been found, however, that oxidation may occur during the processing of the material in the manufacture of cables and mouldings, and that this increases the power factor and may also lead to difficulties in extrusion. These effects may be virtually eliminated, however, by the use of small amounts of anti-oxidants. The measurable, albeit low, power factor of pure polythene is hardly concordant with the supposedly non-polar nature of the substance, and a number of possible explanations of the small basic power factor have been investigated. Measurements of power factor over wide frequency and temperature ranges show that its variation for pure polythene is extremely sluggish, but that oxidation causes the appearance of marked peaks; these observations are examined in the light of present theories of dipole loss. A brief account is given of the structure of polythene, and of its main physical and mechanical properties.
机译:本文主要涉及聚乙烯(乙烯的高聚物)的功率因数,该功率因数通常为0.00015-0.0003,使该材料非常适合用作高频电介质。然而,已经发现,在制造电缆和模制品的过程中,可能在材料的加工过程中发生氧化,并且这增加了功率因数,并且还可能导致挤出困难。但是,通过使用少量的抗氧化剂,实际上可以消除这些影响。纯聚乙烯的可测量的功率因数虽然很低,但与该物质的所谓非极性性质几乎不相符,并且已经研究了一些有关小的基本功率因数的可能解释。在较宽的频率和温度范围内对功率因数的测量表明,纯聚乙烯的功率因数变化非常缓慢,但是氧化会导致出现明显的峰;根据目前的偶极损耗理论对这些观察结果进行了检验。简要介绍了聚乙烯的结构及其主要的物理和机械性能。

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