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1)  non-agglomerated
非团聚
1.
This paper focused on the molybdenum powder with different morphology based on the decomposition and reduction of agglomerated and non-agglomerated ammonium dimolybdate(ADM).
通过对团聚态与非团聚二钼酸铵进行焙解-还原实验,得到不同形貌的钼粉。
2)  instable aggregate
非稳定性团聚体
3)  Non-agglomerating crystal formation
非团聚二钼酸铵晶体
4)  agglomeration [英][ə,ɡlɔmə'reɪʃn]  [美][ə'glɑmə'reʃən]
团聚
1.
Preparation and agglomeration control of zirconia nano-powder by alcohol-aqueous co-precipitation method;
醇水共沉淀法制备氧化锆超细粉末及团聚控制
2.
Application of anti-static agents to eliminate ACF flock agglomeration;
抗静电剂在消除ACF绒团聚现象上的应用
3.
Agglomeration Problems and Anti-agglomeration Measures for the Preparation of Metal Oxide Nanoparticles;
纳米金属氧化物粉体制备过程的团聚问题和反团聚措施
5)  aggregate [英]['æɡriɡit]  [美]['æɡrɪɡɪt]
团聚
1.
Parameter optimization of aggregate desulphurization process for high sulphur coal;
高硫煤团聚脱硫工艺参数优化
2.
Due to the great specific surface and surface energy, there are special domino effects that the powders are very easy to aggregate.
但因其具有极大的比表面积和表面能,因而极易团聚,致使其在应用中无法发挥纳米陶瓷的优异性能,但通过对纳米陶瓷表面改性可改善这一状况。
3.
Therefore hard aggregate was retarded in α phase transformation process.
利用NH4Cl其分解时释放气体的特点控制以碳酸铝铵为前驱体的氧化铝α相变过程中的团聚。
6)  agglomerate [英][ə'glɔmə,reɪt]  [美][ə'ɡlɑmə,ret]
团聚
1.
The forming mechanism and the control of agglomerate are also concisely discussed.
ZrO2是结构陶瓷和功能陶瓷重要的原材料之一,有关纳米ZrO2粉体制备方法的研究有很多,本文介绍了近年来研究较多的液相制备纳米ZrO2粉体的方法,并对制备过程中粉体团聚的形成与控制做了简要论述。
2.
A technique of preparing nano Al 2O 3 powder by wet chemical method in supersonic field was studied, the effects of supersonic radiation on the formation and reunite of the grains were discussed, and the influence of different supersonic frequency on the agglomerate of the powder was researched.
研究了超声场下湿法制备纳米Al2 O3粉体的工艺 ,探讨了超声对颗粒的形成和团聚的影响 ,讨论了不同超声频率对粉体团聚的影响。
3.
The results showed that ultrasonic energy can speed up the nucleation of the precursor, ultrasonic dispersion can control the growth and agglomerate of the crystal nucleus, ultrasonic vibration can also affect the process of the transformation into gel during the process of aging, and was easy .
将超声波应用于湿法制备氧化铝纳米粉工艺过程 ,探讨了超声作用机理 ,研究了超声辐射对颗粒的形成和团聚以及干燥过程的影响 研究表明 ,超声能量能加速前驱体的形核 ,超声分散可控制晶核的长大和团聚 ;超声振动还能影响陈化过程中的沉淀向凝胶的转变 ,易得到疏松三维网络状结构 ,这样的凝胶结构有利于最后得到疏松、少 (无 )团聚的纳米粉
补充资料:非想非非想处天
1.佛教语。即三界中无色界第四天。此天没有欲望与物质﹐仅有微妙的思想。
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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