王顺顺,张喆,王霏,张际亮,颜丙功,顾永华,江开勇.环氧基复合吸波涂层的制备与性能研究[J].表面技术,2022,51(4):325-334.
WANG Shun-shun,ZHANG Zhe,WANG Fei,ZHANG Ji-liang,YAN Bing-gong,GU Yong-hua,JIANG Kai-yong.Preparation and Properties of Epoxy Matrix Composite Absorbing Materials[J].Surface Technology,2022,51(4):325-334
环氧基复合吸波涂层的制备与性能研究
Preparation and Properties of Epoxy Matrix Composite Absorbing Materials
投稿时间:2021-04-06  修订日期:2021-09-27
DOI:10.16490/j.cnki.issn.1001-3660.2022.04.034
中文关键词:  吸波涂层  炭黑  羰基铁粉  复介电常数  复磁导率  吸波性能
英文关键词:absorbing coating  carbon black  carbonyl iron powder  complex permittivity  complex permeability  absorbing performance
基金项目:福建省自然科学基金(2016J01089,2020J01067);福建省科技计划项目(2019H6016)
作者单位
王顺顺 华侨大学 福建省特种能场制造重点实验室 厦门市数字化视觉测量重点实验室,福建 厦门 361021 
张喆 华侨大学 福建省特种能场制造重点实验室 厦门市数字化视觉测量重点实验室,福建 厦门 361021 
王霏 华侨大学 福建省特种能场制造重点实验室 厦门市数字化视觉测量重点实验室,福建 厦门 361021 
张际亮 华侨大学 福建省特种能场制造重点实验室 厦门市数字化视觉测量重点实验室,福建 厦门 361021 
颜丙功 华侨大学 福建省特种能场制造重点实验室 厦门市数字化视觉测量重点实验室,福建 厦门 361021 
顾永华 华侨大学 福建省特种能场制造重点实验室 厦门市数字化视觉测量重点实验室,福建 厦门 361021 
江开勇 华侨大学 福建省特种能场制造重点实验室 厦门市数字化视觉测量重点实验室,福建 厦门 361021 
AuthorInstitution
WANG Shun-shun Fujian Key Laboratory of Special Energy Manufacturing, Xiamen Key Laboratory of Digital Vision Measurement, Huaqiao University, Fujian Xiamen 361021, China 
ZHANG Zhe Fujian Key Laboratory of Special Energy Manufacturing, Xiamen Key Laboratory of Digital Vision Measurement, Huaqiao University, Fujian Xiamen 361021, China 
WANG Fei Fujian Key Laboratory of Special Energy Manufacturing, Xiamen Key Laboratory of Digital Vision Measurement, Huaqiao University, Fujian Xiamen 361021, China 
ZHANG Ji-liang Fujian Key Laboratory of Special Energy Manufacturing, Xiamen Key Laboratory of Digital Vision Measurement, Huaqiao University, Fujian Xiamen 361021, China 
YAN Bing-gong Fujian Key Laboratory of Special Energy Manufacturing, Xiamen Key Laboratory of Digital Vision Measurement, Huaqiao University, Fujian Xiamen 361021, China 
GU Yong-hua Fujian Key Laboratory of Special Energy Manufacturing, Xiamen Key Laboratory of Digital Vision Measurement, Huaqiao University, Fujian Xiamen 361021, China 
JIANG Kai-yong Fujian Key Laboratory of Special Energy Manufacturing, Xiamen Key Laboratory of Digital Vision Measurement, Huaqiao University, Fujian Xiamen 361021, China 
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中文摘要:
      目的 制备综合吸波性能良好的复合吸波涂层。方法 选择炭黑和羰基铁粉进行机械混合,作为吸波剂加入到环氧树脂中进行吸波材料制备,利用扫描电子显微镜对炭黑和羰基铁粉分别进行微观形貌的观察。利用矢量网络分析仪在2~18 GHz内测试其电磁性能,研究炭黑和羰基铁粉含量及涂层厚度对吸波性能的影响规律。结果 通过观察微观形貌发现,炭黑颗粒较小,出现团聚和粘附性现象,羰基铁粉颗粒呈球状,表面光滑,分散性好。复合后的材料混合较均匀,羰基铁粉分散在基体中,与炭黑团配合能够提高材料的吸波性能。纯炭黑的吸波频带较窄,纯羰基铁粉的频带主要集中在中高频段,而复合后的吸波频段较宽,有着良好的吸波性能。炭黑质量分数为4%,羰基铁粉质量分数为250%,厚度为2 mm时,吸波涂层在9~18 GHz的微波吸收率超过90%,且反射损耗峰值达到近–45 dB。结论 炭黑和羰基铁粉复合后,吸波材料的吸波频带更宽,效果更好,解决了单一吸波剂涂层存在的吸波频带窄和集中于高频段的问题。通过调节涂层厚度,可以使材料在相对应的波段获得更好的吸波性能,从而得到更广泛的应用。
英文摘要:
      This paper is to prepare hybrid composite absorbing coating with good absorbing properties. Carbon black and carbonyl iron powder are mixed mechanically and added into epoxy resin as absorbent for the preparation of absorbing materials. The microstructure of carbon black and carbonyl iron powder is observed by scanning electron microscope. The electromagnetic properties are tested by vector network analyzer in 2~18 GHz. The effects of carbon black and carbonyl iron powder content and the coating thickness on the absorbing properties are studied. By observing the microscopic morphology, it is found that the carbon black particles are small, appearing agglomeration and adhesion phenomenon, while the carbonyl iron powder particles are spherical, the surface is smooth, good dispersion. The composite material mixture is more uniform, the carbonyl iron powder dispersed in the matrix with carbon black group can improve the absorbing performance of the material; The absorbing frequency band of pure carbon black is narrow, and that of pure carbonyl iron powder is mainly concentrated in the middle and high frequency band, while the absorbing frequency band of composite is wider, which has good absorbing performance. When the content of carbon black is 4%, carbonyl iron powder is 250%, and the thickness of the absorbing coating is 2 mm, the absorption rate of the coating is more than 90% in the range of 9~18 GHz, and the peak value of reflection loss is nearly –45 dB. The composite material of carbon black and carbonyl iron powder has wider absorbing band and better effect, which solves the problems that single absorbing agent coating is narrow absorbing band and concentrated in high frequency band. By adjusting the coating thickness, the material can obtain better absorption performance in the corresponding band, so it can be used more widely.
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