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1)  ultrafine powder
超细粉体
1.
Preparation of ultrafine powder TiO2 particles by homogeneous precipitation method under boiling reflux conditions;
沸腾回流均相沉淀法合成超细粉体TiO_2
2.
Effect of precipitant on the morphology and performances of ultrafine powder CuO;
沉淀剂对CuO超细粉体形态与性能的影响
3.
Features of Liquid-continuous impinging streams and their Applications in preparation of ultrafine powders;
液体连续相撞击流特性及其在超细粉体制备中的应用
2)  superfine powder
超细粉体
1.
Application of superfine powder technology in TCM;
超细粉体技术在中药行业中的应用
2.
Rheological behavior of PET blend-modified with TiO_2/ZnO superfine powder
TiO_2/ZnO超细粉体共混改性PET的流变性能
3.
The sub-micro superfine powder of codonopsis pilosula(Franch) Nannf are produced by pulverizer of turbulence,and several elements affecting the diameters of superfine powder are researched at the same time,such as the speed of impeller,the quality of reinforced material and the working time.
利用湍流超细粉碎机制取了党参的亚微米级超细粉体,研究了叶轮转速、加料质量、粉碎时间对粉体粒径的影响,对党参的超细粉碎工艺参数进行了优化;分析了造成粉体团聚的原因,结果表明,叶轮转速的提高是引起粉体团聚的主要因素。
3)  Ultra-fine Powder
超细粉体
1.
The research progress of ultra-fine powder Ba_(l-x)Sr_x TiO_3;
钛酸锶钡超细粉体的研究进展
2.
Status of preparation technologies of ultra-fine powder material and its application;
超细粉体材料的制备技术现状及应用形势
3.
Domestic Survey of Production and Application of Inorganic ultra-fine Powders;
国内无机超细粉体生产与应用概况
4)  ultrafine powders
超细粉体
1.
Recent progress of research on VO_2 Ultrafine Powders and thin film;
二氧化钒超细粉体和薄膜研究进展
2.
Tribological properties of serpentine ultrafine powders as lubricating oil additives
蛇纹石超细粉体作润滑油添加剂的摩擦学性能
3.
In the process of preparation ultrafine powders with wet chemical method, the reaction, flitration, drying and calcination will affect the powders size and agglomeration.
湿化学法制备超细粉体时,反应、分离、干燥以及灼烧都不同程度地影响粉体的粒径及团聚。
5)  super-fine powder
超细粉体
1.
A ball-stirring mill for preparing super-fine powder in laboratory was developed.
描述了所研制的适合于实验室使用的超细粉体搅拌球磨机,介绍了基本结构、工作原理、性能特点及其试验案例。
6)  superfine WC powder
超细WC粉体
1.
Superfine WO_3 powder was deoxidized into WC powder by one-step carbonization method,and superfine WC powder was evenly floated in the liquor with deposition method of non-even phase,and nickel salt created into deposition and grew on the WC powder, and formed the coated layer.
采用一步碳化法将制得的超细WO_3粉体还原为超细WC粉体,通过非均相沉淀法,将超细WC粉均匀悬浮在溶液中,让镍盐在WC粉体上生成沉淀并生长,形成包裹层,通过高温分解、还原,生成均匀Ni基包裹型超细WC的复合粉体,同时分析了预处理(分散)、滴加方式、反应液浓度对包裹效果的影响。
补充资料:超细铂粉
分子式:
CAS号:

性质:微米级粒度的铂粉,颗粒形态为球状和多边形。摇实密度1.0~4.0g/cm3。平均粒度1.1~1.7μm。比表面积5~15m2/g。用王水溶解海绵铂得氯铂酸溶液、调正酸度、加分散剂、加热搅拌、加还原剂(水合肼等)、静置冷却、洗涤和烘干即得平均粒度<0.5μm的超细铂粉。用于制作单层或多层混合集成电路的导体浆料,高可靠、高分辨率。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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