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1)  Ni-based ultrafine powder
镍基细微粉末
2)  nickel base powder
镍基粉末
1.
The contact angle of Nickel Base Powder with steel or graphite surface, was measured in the different atmosphere condition.
对铸渗表面合金化过程的热力学和动力学进行了分析 ,导出了铸渗速度和深度的公式 ;并在不同气氛条件下 ,对镍基粉末在钢表面及石墨表面的润湿角进行了测定 ;指出提高浇注温度和增加真空度是增加铸渗深度的 2种有效措施。
3)  microfine nickel powders
微细镍粉
4)  Fine powder
微细粉末
1.
Mixed rare earth oxide fine powders were prepared by coprecipitation method in which aquevus NH_3 was used to adjust pH in the reacting system.
用氨水调pH共沉淀法制备混合稀土氧化物微细粉末。
2.
mixed rareearth oxide fine powders were prepared by coprecipitation method inwhich urea--aqua ammonia adhere tised to adjtlst the system PH in heatedsolution.
以稀土总量为95%的混合稀土氧化物为原料,用尿素-氧水在熟水溶液中调pH值共沉淀法制备了混合稀土氧化物微细粉末。
3.
The effects of the protrusion length of the melt delivery tube and the atomization gas pressure on the average particle size and fine powder yield were studied.
本文以紧耦合气体雾化技术对这一粉末进行研制,分别研究了导液管伸出量、雾化气压对粉末的平均粒度与微细粉末收得率的影响。
5)  ultramicro powder
超微细粉末
6)  FGH95 powder nickel-base superalloy
FGH95粉末镍基合金
1.
By means of the measurement of creep curves and microstructure observation,an investigation has been made into the creep behaviors and deformation features of FGH95 powder nickel-base superalloy.
通过蠕变曲线的测定及组织形貌的观察,研究了FGH95粉末镍基合金的蠕变行为及变形特征。
2.
By means of the measurement of creep curves and microstructure observation,an investigation has been made into the microstructure and creep behaviors of FGH95 powder nickel-base superalloy.
通过进行蠕变曲线测定和组织形貌观察,研究了FGH95粉末镍基合金的微观组织结构与蠕变行为。
补充资料:2,2'-硫化双(4-叔辛基酚氧基)镍
分子式:
分子量:
CAS号:

性质:见AM-101。

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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