1)  topography
粉体形貌
1.
Results showed that by controlling the parameters in the process, the prepared powder could be with or without appreciate agglomerate, and had different size and form The powder had different topography would lead to different porosity and different electrical resistivity of the bulk electrocontact mater.
本文研究了化学包覆工艺对Ag_(80)(WC_(70)TiC_(30))_(17)C_3新型复合电接触材料粉体形貌和性能的影响。
2)  morphology and composition
粉体形貌及组成
3)  morphology of the nano-composite powder
纳米复合粉体形貌
4)  powder
粉体
1.
Study on hydrothermal synthesis of strontium barium niobate powders;
水热法制备铌酸锶钡粉体初探
2.
Preparing ultramicro molybdenum nitride powders by high-energy mechanochemistry method;
高能机械化学法制备超微氮化钼粉体
3.
Synthesis and characterization of La_2Mo_2O_9 powder;
La_2Mo_2O_9粉体的制备及表征
5)  powders
粉体
1.
Research development on combustion synthesis of barium titanate powders;
燃烧合成钛酸钡粉体的研究进展
2.
Synthesis of BaTiO_3 powders by Sol-gel;
溶胶-凝胶法合成钛酸钡超细粉体工艺研究
3.
Synthesis Technology of Lithium Niobate Powders via Wet Chemical Routes;
铌酸锂粉体的湿化学法制备工艺
6)  particle
粉体
1.
Preparation and Catalytic Activity of CuO/Bi_2O_3 Nano-particles;
纳米CuO/Bi_2O_3粉体的制备及催化性能
2.
The evaluation methods of uniformity of particle mixing is compared.
比较了粉体混合均匀度的常用评价方法,认为离差系数法最适合应用于催化裂化催化剂粉体的混兑,用电导率法测定混合粉体中某一组分的含量是一种简单、高效、低成本的有效方法。
3.
Urea used as precipitant agent reacted with soluble Cu2+ and Bi3+ salt to prepare CuO-Bi2O3 particles by homogeneous precipitation method.
采用均匀沉淀法,以尿素与硝酸铜、硝酸铋反应制得CuO-Bi2O3粉体,研究了其对炔醛法合成1,4-丁炔二醇的催化性能。
参考词条
补充资料:粉体技术
分子式:
CAS号:

性质:又称粉体工程,亦称颗粒工程。是研究颗粒性质和行为、颗粒形成、制备及颗粒处理技术的综合性技术科学。

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