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1)  morphology of core-shell structure
核壳结构形态
2)  nuclear shape and structure
核形态结构
3)  core-shell morphology
核壳形态
1.
The good defined core-shell morphology of the latex particles were confirmed by the measurement and analysis of the growth process of particles,the evolution of particle size distribution,as well as the variation of the monomer conversion.
乳液聚合物膜的性能测试结果表明,与相同含氟单体用量的常规乳液相比,含氟聚合物富集于壳层的核壳形态有利于含氟结构单元在聚合物膜表面的分布,使用少量的含氟单体即可显著降低聚合物膜的表面能,提高其耐水性。
4)  core/shell structure
核壳结构
1.
Synthesis of Bi_2O_3/Cu-O-Cr core/shell structured nano-composites;
Bi_2O_3/Cu-O-Cr核壳结构纳米复合物的合成
2.
Progress in preparations of microspheres with core/shell structure;
核壳结构微球的制备方法与展望
3.
Effects of emulsifier on the preparation of PBA/P(α-MS-AN) with core/shell structure;
乳化剂在制备核壳结构PBA/P(α-MS-AN)反应中的应用
5)  Core-shell structure
"核-壳"结构
6)  core-shell structure
壳核结构
1.
The HRTEM shows the nanoparticles form in a core-shell structure, with the size of the particles in range of 5-60 nm and the thickness of the shell 2-4 nm.
高分辨电镜显示该纳米颗粒具有壳核结构,核为纳米Ni及Ni-Al合金,壳为Al2O3/NiO复合氧化物。
2.
The HRTEM and X-ray energy-dispersive spectrum(EDS) as well as X-ray photoelectron spectrum(XPS) show the nanoparticles form in a core-shell structure.
结果高分辨电镜(HRTEM)和能量散射谱(EDS)以及XPS光电子能谱研究表明该复合粉体颗粒具有壳核结构,颗粒的尺寸为20~200 nm,核为Fe纳米颗粒,壳为Ni-P合金,其厚度为3~10 nm。
3.
Based on the effective medium theory,effective permittivity of metal-dielectric composite materials with a two-dimensional core-shell structure bedded in a matrix of another dielectric has been simulated using the finite-element method.
基于有效媒质理论,采用有限元法计算了二维金属-介质壳核结构复合材料模型的等效介电常数。
补充资料:马氏体形态及内部精细结构


马氏体形态及内部精细结构


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