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Development of a Packaging Material Using Antistatic lonomer Part 2: Charge Distributions of Potassium lonomer

机译:用抗静电离聚物开发包装材料第2部分:钾离聚物的电荷分布

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摘要

Generally, plastics and plastic films are low in moisture absorption and high in electric insulation. They are inherently easy to be charged with static and can cause a variety of static troubles. We developed a functional packaging material to solve these static problems, by using potassium ionomer. We reported good antistatic performance (e.g. short static decay time, and excellent ash test) of potassium ionomer films in a previous paper. However, a mechanism underlying the antistatic property of potassium ionomer has not yet been fully elucidated. In this study, we measured the space charge distributions of potassium ionomer using the pulsed electro-acoustic method. As a result of the space charge measurements, we found characteristic charge distribution of potassium ionomer film. On the basis of the existence of this characteristic charge distribution, we speculate that the space electric charge distribution of a potassium ionomer film under a direct current electric field shows apparent electric charge movement.
机译:通常,塑料和塑料膜的吸湿性低并且电绝缘性高。它们本质上很容易带静电,并可能引起各种静电故障。我们开发了一种功能性包装材料,通过使用钾离聚物来解决这些静态问题。我们在先前的论文中报道了钾离聚物薄膜的良好抗静电性能(例如,较短的静电衰减时间和出色的灰分测试)。但是,尚未完全阐明钾离聚物抗静电性能的潜在机理。在这项研究中,我们使用脉冲电声法测量了钾离聚物的空间电荷分布。作为空间电荷测量的结果,我们发现了钾离聚物薄膜的特征电荷分布。基于该特征电荷分布的存在,我们推测在直流电场下钾离聚物膜的空间电荷分布显示出明显的电荷运动。

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