LDPE纤维的热激发发光

Y. Gorokhovatsky, D. Temnov, O.V. Kuvshinova, V. Goldade, W. Stark, S. Krueger, K. Brademann-Jock
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引用次数: 3

摘要

研究了用熔喷法制备的低密度聚乙烯(LDPE)纤维材料,该材料对驻极体滤波器的生产具有重要意义。本文介绍了电子枪在LDPE薄膜和纤维中的热激发发光的对比研究结果。在80 ~ 300 K的温度区间内,存在三个弛豫过程:110 K温度范围内的/spl gamma/-过程与聚合物链大分子的端基和侧基有关,150 K温度范围内的/spl beta/-过程与偶极子-基团迁移导致的电子捕获中心空化有关,230 K温度范围内的/spl alpha/-过程与玻璃态向高弹性态转变导致的段迁移率解冻有关。重要的是要指出,在纤维和薄膜中观察到的所有过程都可以在给定聚合物结构的分子水平上解释。同时与相同材料的聚合物薄膜相比,纤维中的某些工艺遇到了一些困难,这最终导致纤维材料中驻极体稳定性的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermally stimulated luminescence in LDPE fibers
Low density polyethylene (LDPE) fiber materials, produced by melt-blown technology, were investigated, which are important for the production of electret filters. The paper presents the results of a comparative investigation of the thermally stimulated luminescence irradiated by electron gun in the films and fibers based on LDPE. There are three relaxation processes, which take place in the temperature interval 80-300 K: /spl gamma/-process in the temperature range 110 K, which is connected with the end and side groups of macromolecules of polymer chain, /spl beta/-process in the temperature range 150 K, which is connected with the emptying of electronic capture centers due to dipole-group mobility, and /spl alpha/-process in the temperature range 230 K which is connected with the defrosting of segmental mobility due to the phase transition from glass to high elastic state. It is important to point out that all processes observed in fibers and films can be explained at the molecular level of the given polymer structure. At the same time the comparison with the polymer film of the same material some processes in fibers meet some difficulties, which finally leads to an increase of electret stability in fiber materials.
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