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首页> 外文期刊>Journal of Applied Polymer Science >Morphology and Microwave Absorption of Carbon Nanotube/ Bismaleimide Foams
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Morphology and Microwave Absorption of Carbon Nanotube/ Bismaleimide Foams

机译:碳纳米管/双马来酰亚胺泡沫的形貌和微波吸收

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Proper dispersion should be guaranteed when using carbon nanotubes (CNTs) as effective absorbents. Physical dispersion methods, such as mechanical mixing, ball milling, and calendering process (three-roll milling), were adopted to disperse CNTs in the bismaleimide matrix to foam. The effects of the dispersion methods on viscosity, bubble morphology, and microwave-absorbing properties at 12-18 GHz were studied. The results indicated that, three-roll milling can more efficiently separate individual CNTs from the agglomerates compared with the other two methods. This method exhibited the highest viscosity, the most irregular cell shape, and the best microwave-absorbing property. The effects of CNT concentration and foam thickness on the microwave-absorbing properties were also studied. The reflectivity decreased and the position of the reflectivity peak moved to a lower value with increase in CNT concentration and foam thickness. The foam with 30 mm thickness achieved a reflection loss below -8 dB over 3.0 GHz in the range of 13.5-16.5 GHz. The minimum value is -14.2 dB at 14.6 GHz.
机译:使用碳纳米管(CNT)作为有效吸收剂时,应确保适当的分散。采用物理分散方法,例如机械混合,球磨和压延工艺(三辊研磨),将CNT分散在双马来酰亚胺基体中发泡。研究了分散方法对12-18 GHz时粘度,气泡形态和微波吸收性能的影响。结果表明,与其他两种方法相比,三辊研磨可以更有效地从团聚体中分离出单个CNT。该方法表现出最高的粘度,最不规则的泡孔形状和最佳的微波吸收性能。还研究了碳纳米管浓度和泡沫厚度对微波吸收性能的影响。随着CNT浓度和泡沫厚度的增加,反射率降低并且反射率峰的位置移至较低值。厚度为30 mm的泡沫在3.0 GHz的13.5-16.5 GHz范围内实现了低于-8 dB的反射损耗。在14.6 GHz时最小值为-14.2 dB。

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