1) iron oxides crystallite
氧化铁微晶
1.
A brief study and discussion on the growth mcchanism of iron oxides crystallites, the preparation condition and its application to inorganic dyestuffs and magnetic recording materials have been given.
Takada提供的氧化铁微晶生成相图,分别讨论了针形和纺锤形α-FeOOH微晶及Fe_3O_4超微粉的生长机制。
2) microcrystalline ferrite
微晶铁氧体
3) oxidized microcrystalline wax
氧化微晶蜡
4) ZnO microcrystals
氧化锌微晶
1.
In order to study the application of organic-inorganic cooperative action in controlling ZnO microcrystal morphology,ZnO microcrystals were prepared in the hydrothermal cooperative system of hexahydrobenzene and inorganics at 180 ℃ for 4 h.
以聚乙二醇-10000(PEG-10000)为媒介,利用环己烷和无机物二元协同的水热体系,在180℃下,4 h 制备了氧化锌微晶,采用附带选区衍射(SAED)的透射电镜(TEM)、附带能谱(EDS)的扫描电镜(SEM)和 X 射线衍射(XRD)对样品进行了表征。
5) fine iron oxide
氧化铁微粉
1.
The reduction degrees of fine iron oxide at different conditions of temperature,initial gas concentration and particle size were calculated with the model.
考虑到微小尺度下化学反应的热效应,提出了一维传热、传质与化学反应的耦合模型对氢气还原氧化铁微粉过程中的动力学行为进行了模拟。
2.
Mathematical simulation of fine iron oxide reduction at low temperature;
研究了H2在360~400℃之间还原铁矿微粉的过程,并提出了微空间尺度下瞬时气固反应动力学模型,以模拟氧化铁微粉在低温下的还原过程。
6) Ferric Oxide Particles
氧化铁微粒
补充资料:玻璃陶瓷(见微晶玻璃)
玻璃陶瓷(见微晶玻璃)
glass ceramics
玻璃陶瓷glass eeramies见微晶玻璃。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条