用于pmma基薄膜的多针电晕极化系统设计

B. You, Jing Wang, Jianhua Zhou, Weifeng Lin, Chaojian Tong, Z. Xiong
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引用次数: 0

摘要

在对改性PMMA薄膜电晕极化技术进行初步研究的基础上,针对改性PMMA薄膜电晕极化技术提出了一些切实可行的方法,以提高膜的极化效率和二阶非线性光学效应。针对传统单针电晕极化系统中极化场分布普遍不均匀的问题,提出并实现了一种新型的多针电晕极化结构。利用有限差分法对不同多针结构下的极化场进行了模拟,确定了四针结构是最优的电晕极化结构。详细分析了电晕引脚与地电极之间的距离、多引脚的数量和排列方式对极化场分布和效率的影响。然后利用单针和四针电晕极化仪,在不同极化电压和其他优化条件下,对改性PMMA/DR1薄膜进行了极化实验。结果表明,四针电晕极化结构有利于极化场分布的改善和效率的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multipin Corona Poled System Designed for PMMA-Based Films
Based on the preliminary investigation and focused on the corona poling technology for modified PMMA films, some practical and operable way are proposed to enhance the poling efficiency and the second-order nonlinear optical effect of the films. For universal uneven distributions of the polarization field in traditional single-pin corona poled systems, a novel multi-pin corona poling structure is introduced and implemented. After a series of the polarization field simulations in different multi-pin structures, making use of finite difference method, a four-pin structure is determined as the most optimized for corona poling. The influences of the distance between the corona pin and the ground electrode, the number and arrangement of multipin on the distribution and efficiency of polarization field are also analyzed in detail. And then with single-pin and four-pin corona poling instruments, some polarization experiments for a modified PMMA/DR1 film were carried out, under different polarizing voltages and other optimized conditions. The results show that the four-pin corona poling structure is of great benefit to the improvement of polarization field distribution and efficiency.
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