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1)  ultrafine grinding and nanometer powder of Amorphophallus rivieri Durieu
魔芋超细及纳米粉末
2)  Konjak mannan ultrafine grinding powder
魔芋超细粉末
1.
Antiobesity character of Konjak mannan ultrafine grinding powder;
魔芋超细粉末的减肥作用
3)  superfine and nanometer powder
超细和纳米级粉末
4)  nanometer ultrafine powder
纳米超细粉
1.
In the chemical precipitation of nanometer ultrafine powder preparations,this paper analyses the defect of solution mixed drip method:the colloid generation,aggregation and aging etc,which happen with different time and quite different.
本文分析了纳米超细粉体制备的化学沉淀法中溶液滴加法混合的缺点 :胶粒生成、团聚与陈化等在时间顺序上逐渐发生而严重不同一 ,成为粉体颗粒分散性好、粒径均匀的障碍 。
5)  sulfurized rubber with super fine nano-powders
超细全硫化纳米粉末橡胶
1.
The authors prepared high impact polystyrene(HIPS)/halogen flame retardant system adding sulfurized rubber with super fine nano-powders.
制备了引入超细全硫化纳米粉末橡胶的含卤高抗冲聚苯乙烯阻燃体系,采用热重分析法对引入超细全硫化纳米粉末橡胶的高抗冲聚苯乙烯阻燃体系的热降解行为进行了表征。
6)  nano-powder
纳米粉末
1.
It is found that the ignited temperature is 600℃,the reaction duration is 2 min~3 min and the product is red loose nano-powders with the size of 36 nm or so.
燃烧点火温度为600℃,反应时间为2min~3min,产物为红色云层状疏松多孔的纳米粉末,粒径为36nm左右。
2.
In this paper,a simple and effective method to prepare amorphous ZnO nano-powder by low temperature pyrolytic reaction is reported.
报导了一种简单而有效的制备非晶ZnO纳米粉末的方法 ,即固态低温热解法。
3.
A novel method of synthezing MS(M=Zn,Cd)semiconductor nano-powders is presented.
本文介绍一种适合制备MS(M =Zn ,Cd)半导体纳米粉末的化学合成方法。
补充资料:激光法合成纳米超细粉


激光法合成纳米超细粉


激光珐合成纳米起细粉
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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