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首页> 外文期刊>Journal of Renewable Materials >Developing a Cost-Effective Composite Based on Electroless Nickel-Coated Cellulose Fibres for Electromagnetic Interference Shielding
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Developing a Cost-Effective Composite Based on Electroless Nickel-Coated Cellulose Fibres for Electromagnetic Interference Shielding

机译:开发基于化学镀镍纤维素纤维的高性价比复合材料,用于电磁干扰屏蔽

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摘要

A series of composites based on polypropylene with different loadings of nickel-coated cellulose fibres (NCCF) were fabricated with the aim to create a composite suitable for EMI shielding and/or electrostatic discharge application. Various properties such as EMI shielding effectiveness, surface resistivity, volume resistivity and flexural strength were characterised according to ASTM standard. Both surface and volume resistivity suggested that the electrical conductivity of NCCF was not high enough and the composite remains electrically non-conducting up to 40 wt% loading of NCCF. However, nickel particles were still able to shield electromagnetic radiation regardless of their connectivity and conductivity. This was reinforced by EMI shielding measurement which showed that EMI shielding effectiveness of 6.5 dB was obtained by composite containing 40 wt% NCCF. Mechanical property characterisation showed that the NCCF composites have higher flexural strength than pure polypropylene. This is a positive effect as NCCF is now acting as a conducting reinforcing material rather than simply a conducting filler. Furthermore, the composites maintained approximately similar flexural strength regardless of the loading of NCCF.
机译:制造了一系列基于聚丙烯的复合材料,这些复合材料具有不同的镀镍纤维素纤维(NCCF)负载量,目的是创建适用于EMI屏蔽和/或静电放电应用的复合材料。根据ASTM标准表征了各种特性,例如EMI屏蔽效果,表面电阻率,体积电阻率和抗弯强度。表面电阻率和体积电阻率均表明NCCF的电导率不够高,并且复合材料在不超过40 wt%的NCCF负载下仍保持非导电性。但是,镍粒子仍然能够屏蔽电磁辐射,无论它们的连通性和导电性如何。这通过EMI屏蔽测量得到了加强,该测量表明,包含40 wt%NCCF的复合材料可获得6.5 dB的EMI屏蔽效果。力学性能表征表明,NCCF复合材料比纯聚丙烯具有更高的弯曲强度。这是积极的效果,因为NCCF现在起着导电增强材料的作用,而不仅仅是导电填料。此外,无论NCCF的负荷如何,复合材料都保持大致相似的抗弯强度。

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