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用于电磁干扰屏蔽应用的纳米颗粒增强生物基聚氨酯泡沫的比较研究

A Comparative Study on Bio-Based PU Foam Reinforced with Nanoparticles for EMI-Shielding Applications.

作者信息

Selvaraj Vinoth Kumar, Subramanian Jeyanthi

机构信息

School of Mechanical Engineering, Vellore Institute of Technology, Chennai 600127, Tamil Nadu, India.

出版信息

Polymers (Basel). 2022 Aug 17;14(16):3344. doi: 10.3390/polym14163344.

Abstract

Today, most commercial polyols used to make polyurethane (PU) foam are produced from petrochemicals. A renewable resource, castor oil (CO), was employed in this study to alleviate concerns about environmental contamination. This study intends to fabricate a bio-based and low-density EMI-defending material for communication, aerospace, electronics, and military appliances. The mechanical stirrer produces the flexible bio-based polyurethane foam and combines it with nanoparticles using absorption and hydrothermal reduction processes. The nanoparticles used in this research are graphite nanoplates (GNP), zirconium oxide (ZrO), and bamboo charcoal (BC). Following fabrication, the samples underwent EMI testing using an EMI test setup with model number N5230A PNA-L. The EMI experimental results were compared with computational simulation using COMSOL Multiphysics 5.4 and an optimization tool using response surface methodology. A statistical design of the experimental approach is used to design and evaluate the experiments systematically. An experimental study reveals that a 0.3 weight percentage of GNP, a 0.3 weight percentage of ZrO, and a 2.5 weight percentage of BC depict a maximum EMI SE of 28.03 dB in the 8-12 GHz frequency band.

摘要

如今,大多数用于制造聚氨酯(PU)泡沫的商业多元醇都是由石化产品生产的。本研究采用可再生资源蓖麻油(CO)来缓解对环境污染的担忧。本研究旨在制造一种用于通信、航空航天、电子和军事设备的生物基低密度电磁干扰防护材料。机械搅拌器生产出柔性生物基聚氨酯泡沫,并通过吸收和水热还原工艺将其与纳米颗粒结合。本研究中使用的纳米颗粒是石墨纳米片(GNP)、氧化锆(ZrO)和竹炭(BC)。制造完成后,使用型号为N5230A PNA-L的电磁干扰测试装置对样品进行电磁干扰测试。将电磁干扰实验结果与使用COMSOL Multiphysics 5.4进行的计算模拟以及使用响应面方法的优化工具进行比较。实验方法的统计设计用于系统地设计和评估实验。一项实验研究表明,在8-12 GHz频段,0.3重量百分比的GNP、0.3重量百分比的ZrO和2.5重量百分比的BC表现出最大电磁干扰屏蔽效能为28.03 dB。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ca0/9413289/b1424dd52aa2/polymers-14-03344-g001.jpg

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