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国家自然科学基金(51332004)

作品数:7 被引量:34H指数:4
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发文基金:国家自然科学基金高等学校学科创新引智计划更多>>
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微波可调谐超材料吸波体研究进展被引量:8
2016年
随着电磁波干扰防护技术与隐身技术的的发展,吸波材料已成为科学研究的重要课题。介绍了材料的吸波原理、吸波材料的分类及其特征,总结了超材料吸波体在微波频段的应用研究现状,综述了超材料作为可调谐吸波体的研究进展,展望了超材料在可调谐吸波体中的研究趋势。
周倩殷小玮张立同成来飞
关键词:微波超材料吸波体
原位自生SiC纳米线掺杂SiOC陶瓷粉体的制备与介电性能(英文)被引量:3
2019年
以二茂铁为催化剂,催化裂解陶瓷聚合物先驱体制备了原位自生SiC纳米线掺杂的SiOC陶瓷粉体。SiC纳米线为堆垛方向为<111>的β相单晶体,直径为10~100 nm,长度可达数微米,均匀分布在SiOC粉体中。基于SiC纳米线微观结构分析,探讨了纳米线的生长机制。研究了复合陶瓷粉体的介电性能。结果发现,SiC纳米线含量可调控复合粉体的电性能,较高含量纳米线可赋予复合粉体较高的介电实部与虚部。
叶昉段文艳莫然殷小玮张立同成来飞
关键词:介电性能
聚合物先驱体转化法制备多孔陶瓷的研究进展被引量:4
2019年
聚合物转化陶瓷(polymer derived ceramics,PDCs)制备技术简单,烧结温度低,可设计性强,40年来得到了极大的发展。本文综述了多孔PDCs的研究进展,包括模板法、发泡法、冷冻铸造技术、增材制造技术等制备方法;此外,还对陶瓷前驱体如聚碳硅烷、聚硅氧烷、聚硅氮烷等分子侧链设计以调整陶瓷产物的组成、微结构、力学性能等的研究现状进行了综述;提出未来发展的方向是增材制造技术制备多孔 PDCs及陶瓷前驱体分子层面的设计。
涂建勇穆阳阳许海龙殷小玮成来飞
First-principles study of structure,mechanical and optical properties of La-and Sc-doped Y2O3被引量:9
2019年
The electronic,mechanical and optical properties of La-and Sc-doped Y2O3 were investigated using firstprinciples calculations.Two doping sites of Sc and La in Y2O3 were modeled.The calculated values of the energy of formation show that the most energetically favorable site for a La atom in Y2O3 is a d-site Y atom,while for Sc a b-site Y atom is the more stable position.The calculated band gap shows a slight decrease with increasing La or Sc concentration.The calculated results for the mechanical and optical properties of Y(2-x)RxO3(R=Sc or La,0
Xian ZhangSen GaoWenhua GuiQingfeng Zeng
关键词:Y2O3MECHANICALPROPERTIESOPTICALPROPERTIESFIRST-PRINCIPLESRARE
Structural, phonon, mechanical, optical, and thermodynamic properties of stable β-La_2S_3 from first-principles calculations被引量:2
2017年
The band structures,density of states,phonon,optical properties,and thermodynamic properties of β-La_2S_3 were calculated from first-principles using the plane-wave pseudopotential method.First,the structures were fully relaxed through the first-principles method.Then,the zone-center phonon-mode frequencies were evaluated within the framework of density functional perturbation theory.Properties related to the structure,phonons,optics,elastic constants,and thermodynamics of β-La_2S_3 were reported.The dielectric function,refractive index,absorption coefficient,extinction coefficient,infrared(IR) reflectance,energy,heat capacity,and Debye temperature spectra were also given β-La_2S_3 was a direct-gap semiconductor,and calculation indicated that its energy gap was 0.191 eV.From the phonon spectra,it could be concluded that the lattice dynamics were stable.A strong IR reflection occurred in a range of 0-1000 nm,arising from several strong IR-active modes,resulting in poor transmission properties.Relatively good transmission properties were observed in the range above 2000 nm,with low reflectivity and dissipation due to the absence of IR-active or weak modes.
张显桂文华吴茜曾庆丰
关键词:FIRST-PRINCIPLES
Electromagnetic interference shielding properties of polymer derived SiC-Si3N4 composite ceramics被引量:2
2019年
SiC-Si3N4 composite ceramics are successfully fabricated by pyrolysis of ferrocene-modified polycarbosilane(PCS) mixed with inert filler Si3N4 powders, followed by thermal treatment from 1100℃ to 1400℃ in Ar atmosphere. The porosity of SiC-Si3N4 ceramics decreases to 6.4% due to the addition of inert filler Si3N4. And the content and crystallization degree of free carbon and SiC derived from PCS are improved simultaneously with the increase of thermal treatment temperature. Finally, the free carbon and SiC interconnect, forming the conductive network. As a result, the electromagnetic interference(EMI) shielding performance of the as-prepared ceramic annealed at 1400℃ reaches up to 36 d B, meaning more than99.9% of EM energy is shielded. The low porosity and high EMI shielding performance enable SiC-Si3N4 composite ceramics to be a promising electromagnetic shielding and structural material.
Xiaoling LiuXiaowei YinWenyan DuanFang YeXinliang Li
关键词:SIC-SI3N4
Additive manufacturing alumina components with lattice structures by digital light processing technique被引量:6
2019年
Digital light processing technique was applied to manufacture alumina ceramic parts with two types of lattice structure units, i.e. vertex interconnect structure and edge structure. The internal porosity of the unit is 40%. The printed parts were sintered and the grain size is about 1.1 μm. The bending strength of the vertex interconnect structure is much larger than that of the edge structure. Materials genome initiative(MGI) aims to digital design and intelligent manufacture for advanced components. This research shows us an example to achieve this goal.
Qjngfeng ZengChanghao YangDingyi TangJiayao LiZhiqiang FengJiantao LiuKang Guan
关键词:CERAMICSDLP
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