表面技术
錶麵技術
표면기술
SURFACE TECHNOLOGY
2014年
4期
119-123
,共5页
张泽洋%刘祥萱%张海丰%李伟%燕艳
張澤洋%劉祥萱%張海豐%李偉%燕豔
장택양%류상훤%장해봉%리위%연염
钕掺杂%双层吸波涂层%反射率%吸波性能
釹摻雜%雙層吸波塗層%反射率%吸波性能
녀참잡%쌍층흡파도층%반사솔%흡파성능
Nd substitution%double-layers absorber%reflectivity%microwave absorbing property
目的:制备高性能 NiFe1.98 Nd0.02 O4-Fe 双层吸波涂层。方法采用溶胶凝胶自燃烧法制备钕掺杂 NiFe1.98 Nd0.02 O4。借助 X 射线衍射仪、扫描电镜和矢量网络分析仪对 NiFe1.98 Nd0.02 O4和羰基铁的结构、形貌、电磁参数进行测试分析。采用遗传算法对 NiFe1.98 Nd0.02 O4-羰基铁双层涂层的厚度进行优化设计。结果以环氧树脂为基体,以羰基铁和 NiFe1.98 Nd0.02 O4为吸波剂的双层吸波涂层具备较好的吸波性能,厚度约1 mm,反射率在9.25~11.35 GHz 范围内均小于-10 dB。结论 NiFe1.98 Nd0.02 O4层和羰基铁层在吸波性能上有很好的互补性,理论优化结果和实验结果相同。
目的:製備高性能 NiFe1.98 Nd0.02 O4-Fe 雙層吸波塗層。方法採用溶膠凝膠自燃燒法製備釹摻雜 NiFe1.98 Nd0.02 O4。藉助 X 射線衍射儀、掃描電鏡和矢量網絡分析儀對 NiFe1.98 Nd0.02 O4和羰基鐵的結構、形貌、電磁參數進行測試分析。採用遺傳算法對 NiFe1.98 Nd0.02 O4-羰基鐵雙層塗層的厚度進行優化設計。結果以環氧樹脂為基體,以羰基鐵和 NiFe1.98 Nd0.02 O4為吸波劑的雙層吸波塗層具備較好的吸波性能,厚度約1 mm,反射率在9.25~11.35 GHz 範圍內均小于-10 dB。結論 NiFe1.98 Nd0.02 O4層和羰基鐵層在吸波性能上有很好的互補性,理論優化結果和實驗結果相同。
목적:제비고성능 NiFe1.98 Nd0.02 O4-Fe 쌍층흡파도층。방법채용용효응효자연소법제비녀참잡 NiFe1.98 Nd0.02 O4。차조 X 사선연사의、소묘전경화시량망락분석의대 NiFe1.98 Nd0.02 O4화탄기철적결구、형모、전자삼수진행측시분석。채용유전산법대 NiFe1.98 Nd0.02 O4-탄기철쌍층도층적후도진행우화설계。결과이배양수지위기체,이탄기철화 NiFe1.98 Nd0.02 O4위흡파제적쌍층흡파도층구비교호적흡파성능,후도약1 mm,반사솔재9.25~11.35 GHz 범위내균소우-10 dB。결론 NiFe1.98 Nd0.02 O4층화탄기철층재흡파성능상유흔호적호보성,이론우화결과화실험결과상동。
Objective To prepare high-performance double-absorbing coating NiFe1. 98 Nd0. 02 O4-Fe. Methods Nd substituted nickel ferrites (NiFe1. 98 Nd0. 02 O4 ) were prepared using the sol-gel-autocombustion method. The microstructures,morphology and the electromagnetic properties of NiFe1. 98 Nd0. 02 O4 and carbonyl iron were characterized with X-ray diffraction (XRD), scanning e-lectron microscopy (SEM) and a vector network analyzer. The thickness of double-layers microwave absorption coating was opti-mized by the genetic algorithm (GA). Results Using carbonyl iron and NiFe1. 98 Nd0. 02 O4 as absorbents, double composite absorb-ing coating with thickness d=1 mm was prepared. The results showed that the reflection loss of coating was less than -10 dB over the range from 9. 25 GHz to 11. 35 GHz. Conclusion The results of measurements showed that the microwave absorption property of NiFe1. 98 Nd0. 02 O4 and carbonyl iron were complementary to each other. The calculated RL agreed closely with the experimental re-sults in the whole measured frequency range.