小添加剂苯二胺改性效果的研究

A. Filonovich, O. Gubanov, D. S. Alymov, V. Gadalov
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摘要

介绍了聚合物的机械电物理性质及其在放电和机械力同时作用下的改性研究。本文介绍了在高压聚乙烯(LDPE)的基础上,在苯二胺添加剂OPD和PhI的混合作用下获得的新型薄膜聚合物材料的电物理和机械强度、介质损耗角正切值、体积电阻和相对断裂变形的温度依赖关系的实验研究结果。添加剂的含量在(0.03 ~ 0.5)wt%范围内变化。引入0.1 wt%的PhI化学添加剂以及随后的三倍取向萃取,LDPE薄膜的电物理特性(对高电场的抵抗力增加)的增加可能与载流子浓度及其迁移率的降低以及聚合物链的结晶度和堆积密度的增加有关。这使得电离过程很难在给定的高电场强度下发生。结果表明,在拉伸机械力的作用下,高分子材料的电物理特性下降,导致材料中堆积电荷,形成亚微裂纹。
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Study of the effect of modification with small additives of phenylenediamines
The studies of the mechanical electrophysical properties of polymers and their modifications under the simultaneous influence of electrical discharges and mechanical force are presented. The paper presents the results of the experimental studies of the electrophysical and mechanical strength, the temperature dependence of the tangent of the dielectric loss angle, the specific volume electrical resistance and the relative deformation at break of new film polymer materials obtained on the basis of high-pressure polyethylene (LDPE) with a mixture of phenylenediamine additives OPD and PhI. The content of additives varied in the range of (0.03-0.5) wt%. The established increase in the electrophysical characteristics (increase in resistance to high electric field) of the LDPE film with the introduction of 0.1 wt% of chemical additives of PhI and with subsequent three-fold orientation extraction can be associated with a decrease in the concentration of charge carriers and their mobility, as well as an increase in the degree of crystallinity and packing density of polymer chains, which makes it difficult for ionization processes to occur at a given high electric field strength. It is shown that a decrease in the electrophysical characteristics of the studied polymer materials in the presence of tensile mechanical forces leads to the accumulation of bulk charges in them and the formation of submicrocracks.
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