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1)  platelet grain
板晶
1.
The paper reviews some main developments in ceramic field,and discusses several forming mecha- nisms and applications of in-situ synthesized self-reinforced and self-toughened components,such as elongated grain and platelet grain,from physicoehemical standpoint.
结合近期在陶瓷领域的一些主要成果,从物理化学角度,论述了在材料内部原位生成棒晶、板晶等补强韧化组元的几种形成机理及其应用。
2)  microcrystalline zinc board
微晶锌板
1.
Based on the experiments,this article emphasizes the influence from aluminum and magnesium content to the etching performance of microcrystalline zinc board.
文章以实验为依据,着重探求了铝镁含量对微晶锌板蚀刻性能的影响。
3)  colloidal crystal template
胶晶模板
1.
The prepared spheres were assembly to colloidal crystal templates by the methods of gravitational sedimentation, centrifugal sedimentation, and vertical
目前,3DOM材料的主要制备方法是胶晶模板法,本文在综述大量文献的基础上,以胶晶模板技术为核心,制备了多种3DOM氧化物、炭材料,并以3DOM炭材料作为载体进行了应用性研究。
2.
The effects of some factors such as filling methods,filling time and filling times on the filling of precursor in a colloidal crystal template method were systemically investigated for preparing SiO2 ordered macroporous materials.
以SiO2有序大孔材料制备作为研究对象,系统考察了胶晶模板法中影响前驱物填充率的诸因素,包括填充方法、填充时间和填充次数。
4)  liquid crystal template
液晶模板
5)  plate-like grain
板状晶粒
1.
Based on classical theory of surface diffusion and evaporation-condensation, a fi- nite element program is developed to simulate the unstable shape evolution of plate-like grains.
基于物质表面扩散和蒸发-凝结的经典理论,对板状晶粒不稳定外形的演变过程进行了有限元模拟结果表明,热蚀沟角θ=0(无内晶界)时,板状晶粒将直接圆柱化;当内晶界存在时,存在一临界热蚀沟角θmin;当θ>θmin时,板状晶粒沿晶界分离。
6)  plate-like WC grain
板状晶WC
1.
By comparing the microstructures of WC-20Co-1Y_2O_3 cemented carbides by hot-press at the temperature below the eutectic melting temperature and conventional liquid phase sintering, it is shown that the plate-like WC grain is formed through the mechanism of dissolution/reprecipitation process (recrystallization) .
采用超细WC原料 ,在WC 2 0Co合金中加入纳米Y2 O3,在 1 4 4 0℃的液相烧结温度下获得了含板状晶WC双模组织结构的合金。
补充资料:晶板增强体
分子式:
CAS号:

性质:指结晶完整、晶粒宽厚比大于5的片状单晶体。它与晶须、纤维增强体一样,可以用于陶瓷,金属和高聚物基复合材料中,起到增强增韧作用,改善各种复合材料的力学性能和耐磨性能。晶板增强体除了具有强度、高弹性模量、好的化学稳定性能及热稳定性等优点外,还具有易分散、价格便宜、对人体健康无害等优点。有碳化硅晶板、碳化硼晶板、硼化锆晶板、氧化铝晶板等,各种晶板增强体均有自己的最佳制备方法。

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