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首页> 外文期刊>Materials >Scalable Fabrication of Natural-Fiber Reinforced Composites with Electromagnetic Interference Shielding Properties by Incorporating Powdered Activated Carbon
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Scalable Fabrication of Natural-Fiber Reinforced Composites with Electromagnetic Interference Shielding Properties by Incorporating Powdered Activated Carbon

机译:通过掺入粉末状活性炭可扩展制备具有电磁干扰屏蔽性能的天然纤维增强复合材料

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Kenaf fiber—polyester composites incorporated with powdered activated carbon (PAC) were prepared using the vacuum-assisted resin transfer molding (VARTM) process. The product demonstrates the electromagnetic interference (EMI) shielding function. The kenaf fibers were retted in a pressured reactor to remove the lignin and extractives in the fiber. The PAC was loaded into the freshly retted fibers in water. The PAC loading effectiveness was determined using the Brunauer-Emmett-Teller (BET) specific surface area analysis. A higher BET value was obtained with a higher PAC loading. The transmission energies of the composites were measured by exposing the samples to the irradiation of electromagnetic waves with a variable frequency from 8 GHz to 12 GHz. As the PAC content increased from 0% to 10.0%, 20.5% and 28.9%, the EMI shielding effectiveness increased from 41.4% to 76.0%, 87.9% and 93.0%, respectively. Additionally, the EMI absorption increased from 21.2% to 31.7%, 44.7% and 64.0%, respectively. The ratio of EMI absorption/shielding of the composite at 28.9% of PAC loading was increased significantly by 37.1% as compared with the control sample. It was indicated that the incorporation of PAC into the composites was very effective for absorbing electromagnetic waves, which resulted in a decrease in secondary electromagnetic pollution.
机译:使用真空辅助树脂传递模塑(VARTM)工艺制备了掺有粉状活性炭(PAC)的Kenaf纤维-聚酯复合材料。该产品演示了电磁干扰(EMI)屏蔽功能。洋麻纤维在加压反应器中退浆以除去纤维中的木质素和提取物。将PAC装入水中的新鲜光纤维中。使用Brunauer-Emmett-Teller(BET)比表面积分析确定了PAC的装载效果。较高的PAC含量获得较高的BET值。通过将样品暴露于8 GHz至12 GHz可变频率的电磁波辐照下来测量复合材料的传输能量。随着PAC含量从0%增加到10.0%,20.5%和28.9%,EMI屏蔽效果分别从41.4%增加到76.0%,87.9%和93.0%。此外,EMI吸收率分别从21.2%增加到31.7%,44.7%和64.0%。与对照样品相比,在PAC负载为28.9%时,复合材料的EMI吸收/屏蔽比率显着提高了37.1%。结果表明,将PAC掺入复合材料中对吸收电磁波非常有效,从而减少了二次电磁污染。

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