双损耗Al2O3基多孔吸波材料的制备及其吸波性能
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1.长安大学材料科学与工程学院,西安 710061;2.长安大学交通铺面材料教育部工程研究中心,西安 710061

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TM25

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长安大学中央高校基础研究项目(No.300102310110);长安大学创新团队项目(No.300102311403);长安大学2020大学生创新创业训练计划项目(S202010710176X)


Fabrication and Microwave Absorbing Performance of Porous Al2O3 Ceramic With Double Loss of Electromagnetic Wave
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1.School of Materials Science and Engineering,Chang'an University,Xi'an 710061;2.Engineering Research Center of Transportation Materials of Ministry of Education,Chang'an University,Xi'an 710061

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    摘要:

    基于片状Al2O3陶瓷互锁结构强度高的特点,制备出夹杂石墨的高气孔率的Al2O3多孔陶瓷,并通过原位还原在多孔骨架中制备出Ni微粒,形成一种轻质的双损耗陶瓷基吸波材料。通过XRD、FE-SEM和EDS研究了还原温度对多孔吸波材料的组成、微观形貌、元素分布和吸波性能的影响。结果表明,还原温度升温至700 ℃可将多孔网络中Ni完全还原,形成以堆叠互锁Al2O3为基,夹杂片状石墨和孔表面覆盖Ni微粒的双损耗轻质吸波材料。当复合材料厚度为6.5 mm时,最小反射损耗为-35.01 dB,有效吸收带宽达到1.75 GHz。片状Al2O3锁定的石墨片构筑的导电网络,Ni微粒与基体之间的极化效应等共同促进复合材料良好的微波吸收性能。

    Abstract:

    Based on the high strength of flake Al2O3 ceramic interlocking structure,Al2O3 porous ceramics with high porosity and graphite were prepared, and Ni particles were prepared by in-situ reduction in the porous skeleton to form a lightweight double-loss ceramic-based absorbing material. The effects of reduction temperature on the composition, microstructure,element distribution and microwave absorption properties of porous absorbing materials were studied by XRD,FE-SEM and EDS. Results concluded the following.The results show that Ni on the framework can be completely reduced when the temperatures is up to 700 ℃. The composite with a double loss function is composed of an interlocking Al2O3 matrix with graphite flakes embedded in it and Ni particles on the surface of pores. As the thickness of the composite is 6.5 mm,the reflection loss (RLmin) value is 35.01 dB and the effective bandwidth (RL ≤10 dB) is 1.75 GHz.Microwave absorption can be attributed to the conductive network formed by graphite flakes between flaky Al2O3 grains,as well as to the good impedance matching and polarization effect caused by the Ni particle-matrix interface.

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乔宇燨,李红伟,张利琪,吉雪丽,周亮.双损耗Al2O3基多孔吸波材料的制备及其吸波性能[J].宇航材料工艺,2023,53(5):50-55.

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  • 收稿日期:2021-11-19
  • 最后修改日期:2023-09-18
  • 录用日期:2022-04-06
  • 在线发布日期: 2023-10-24
  • 出版日期: 2023-10-30
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