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Effects of fiber contents on the mechanical and microwave absorbent properties of carbon fiber felt reinforced geopolymer composites

机译:纤维含量对碳纤维毛毡增强地缘聚合物复合材料机械和微波吸收性能的影响

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摘要

In this paper, phosphate-based geopolymer composites are studied and the effects of different carbon fiber felt contents (from 20 vol% to 40 vol%) on the phase composition, microstructure, mechanical properties and microwave absorbent properties from 2 GHz to 18 GHz frequency band of the composites were systematically investigated. The results indicate that with the increase in carbon fiber felt contents, flexural strength and Young's modulus of the composites gradually increased. The fracture mode of the composite changed from brittle failure to ductile failure with the presence of carbon fiber felt. It was mainly due to the micropore deformation as well as fibers pulling-out and the crack deflection, which consumed most fracture energy. However, microwave absorbent performance tended to increase at first and then decreased as the carbon fiber felt content ramping up. When the content of carbon fiber felt in the composite was 26.7 vol%, the composite showed the best microwave absorbent performance and the reflection loss reached to 59.3 dB. It is mainly attributed to the Debye polarization of the carbon fibers and the interface polarization between fibers and the matrix.
机译:本文研究了基于磷酸盐的地质聚合物复合材料,以及不同碳纤维毡含量(从20体积%至40体积%)对2GHz至18GHz频率的相组合物,微观结构,机械性能和微波吸收性的影响系统地研究了复合材料的带。结果表明,随着碳纤维的增加,复合材料的弯曲强度和杨氏模量逐渐增加。复合材料的断裂模式从脆性失败发生变化与碳纤维毡的存在。它主要是由于微孔变形以及纤维拉出和裂缝偏转,消耗了最裂缝的能量。然而,随着碳纤维毡含量升高,微波吸收性倾向于趋于增加,然后随后降低。当复合材料中的碳纤维含量为26.7体积%时,复合材料显示出最佳的微波吸收性性能,并且反射损耗达到59.3dB。它主要归因于碳纤维的脱光和纤维和基质之间的界面极化。

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