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Sm_2O_3填充碳纳米管/磁性金属微粉双层吸波复合材料的制备与吸波性能 被引量:1
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作者 张拦 卫应亮 王璐 《北京交通大学学报》 CAS CSCD 北大核心 2011年第6期112-116,共5页
通过湿化学法制备了Sm2O3填充碳纳米管吸收剂,并依据传输线理论和阻抗匹配原则,设计制备了环氧树脂基Sin203填充碳纳米管/磁性金属微粉双层结构吸波复合材料.采用透射电镜、扫描电镜和X射线衍射分析对Sin2O3填充碳纳米管和磁性金属... 通过湿化学法制备了Sm2O3填充碳纳米管吸收剂,并依据传输线理论和阻抗匹配原则,设计制备了环氧树脂基Sin203填充碳纳米管/磁性金属微粉双层结构吸波复合材料.采用透射电镜、扫描电镜和X射线衍射分析对Sin2O3填充碳纳米管和磁性金属微粉的微观形貌和结构进行了分析,HP8722ES矢量网络分析仪测量了材料在2~18GHz频率范围内的吸波特性.研究表明:与未填充碳纳米管相比,Sm2O3填充碳纳米管的磁损耗正切增大,吸收频带变宽,同时吸收峰由C波段迁移到中频X波段.这种双层结构吸波复合材料具有较好的宽频带吸波效果,其匹配厚度为dm=5.0mm时,在2.8和14.2GHz处有两个吸收峰,反射率小于-10dB的频宽为0.98GHz,反射率低于-5dB的频宽达6.46GHz,在S波段均低于-5dB. 展开更多
关键词 稀土 多壁碳纳米管 磁性金属微粉 双层结构复合材料 吸波性能
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Design and characterization of Ti6Al4V/20CoCrMo−highly porous Ti6Al4V biomedical bilayer processed by powder metallurgy 被引量:6
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作者 E.MIHALCEA H.J.VERGARA-HERNÁNDEZ +3 位作者 O.JIMENEZ L.OLMOS J.CHÁVEZ D.ARTEAGA 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第1期178-192,共15页
The aim of this work was to develop a Ti6Al4V/20CoCrMo−highly porous Ti6Al4V bilayer for biomedical applications.Conventional powder metallurgy technique,with semi-solid state sintering as consolidation step,was emplo... The aim of this work was to develop a Ti6Al4V/20CoCrMo−highly porous Ti6Al4V bilayer for biomedical applications.Conventional powder metallurgy technique,with semi-solid state sintering as consolidation step,was employed to fabricate samples with a compact top layer and a porous bottom layer to better mimic natural bone.The densification behavior of the bilayer specimen was studied by dilatometry and the resulting microstructure was observed by scan electron microscopy(SEM)and computed microtomography(CMT),while the mechanical properties and corrosion resistance were evaluated by compression and potentiodynamic tests,respectively.The results indicate that bilayer samples without cracks were obtained at the interface which has no negative impact on the densification.Permeability values of the highly porous layer were in the lower range of those of human bones.The compression behavior is dictated by the highly porous Ti6Al4V layer.Additionally,the corrosion resistance of Ti6Al4V/20CoCrMo is better than that of Ti6Al4V,which improves the performance of the bilayer sample.This work provides an insight into the important aspects of a bilayer fabrication by powder metallurgy and properties of Ti6Al4V/20CoCrMo−highly porous Ti6Al4V structure,which can potentially benefit the production of customized implants with improved wear performance and increased in vivo lifetime. 展开更多
关键词 bilayer structure composites POROSITY sintering permeability compression behavior corrosion
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