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Effect of silica fume and colloidal graphite additions on the EMI shielding effectiveness of nickel fiber cement based composites

机译:硅粉和胶体石墨添加剂对镍纤维水泥基复合材料的EMI屏蔽效果的影响

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Utilization of silica fume and colloidal graphite in nickel fiber cement based composites as a mean of improving the dispersity of nickel fiber and the electromagnetic interference (EMI) shielding effectiveness (SE) of cement based composites. This study aimed of test the EMI SE of cement based composites in 1-1500 MHz of the frequency range by coaxial cable method. The conductivity of cement based composites was test by four-point probe meter. The uniformity distribution of nickel fiber, silica fume and colloidal graphite was characterized by scanning electron microscopy. The results obtained indicate the nickel fiber has great effects on the EMI SE of cement based composites. With the content of nickel fiber was increased, the EMI SE of the composites were gradually increasing. When the nickel fiber was doping by 9.0 vol.%, the average SE of cement composites was reached 21.78 dB, the maximum SE was 24.48 dB in 120 MHz. When 20 wt.% of silica fume and 9.0 vol.% of nickel fiber were added in a cement matrix, the shielding property of the composite was best, the average SE was reached 30.13 dB, the maximum SE was 35.50 dB in 30 MHz. The best EMI SE was achieved by the sample comprised of colloidal graphited 20 wt.% and nickel fiber 5.0 vol.%, as exhibiting the average SE was reached 45.0 dB, the largest SE was 51.19 dB at 1170 MHz, indicating a synergistic effect of colloidal graphite and nickel fiber. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在镍纤维水泥基复合材料中使用硅粉和胶体石墨作为提高镍基纤维分散性和水泥基复合材料的电磁干扰(EMI)屏蔽效果(SE)的手段。本研究旨在通过同轴电缆方法在频率范围的1-1500 MHz下测试水泥基复合材料的EMI SE。用四点探针仪测试水泥基复合材料的电导率。用扫描电子显微镜对镍纤维,硅粉和胶体石墨的均匀分布进行了表征。所得结果表明镍纤维对水泥基复合材料的EMI电磁干扰有很大影响。随着镍纤维含量的增加,复合材料的EMI逐渐增大。当镍纤维掺入9.0 vol。%时,水泥复合材料的平均SE达到21.78 dB,在120 MHz下最大SE为24.48 dB。当在水泥基体中添加20 wt。%的硅粉和9.0 vol。%的镍纤维时,复合材料的屏蔽性能最佳,平均SE在30 MHz下达到30.13 dB,最大SE在35.50 dB。由20%(重量)的胶态石墨和5.0%(体积)的镍纤维组成的样品获得了最佳的EMI SE,因为其平均SE达到45.0 dB,最大的SE在1170 MHz时为51.19 dB,表明产生了协同效应。胶体石墨和镍纤维。 (C)2017 Elsevier Ltd.保留所有权利。

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