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1)  crystallization wave
晶化波
2)  microwave crystallization
微波晶化
1.
Meso-pore zeolite MCM-41 was synthesized by means of microwave crystallization,room-temperature crystallization and hydrothermal crystallization.
分别用微波晶化、常温晶化、水热晶化3种方法合成MCM-41中孔分子筛,详细比较了这3种合成方法在操作参数和所合成分子筛物性方面的差异。
3)  shock wave crystallization
激波晶化
1.
It was found that the shock wave crystallization is very close to 100%,though the period of crystallization is only about 10~(-6)~10~(-9)s.
结果表明,尽管激波晶化时间极短,却具有极高的转变速率,晶化时间仅为退火晶化时间的10-6~10-9,晶化度却接近100%。
2.
It is found that shock wave crystallization is very perfect (fraction crystallized is very close to 100%)though the period of crystallization is very short ,only about 10-6 ~10-8  of annealing′s.
应用升温、等温和重复加热的DSC技术,对几种非晶合金的激波晶化和退火晶化作了对比研究。
3.
Compared themwith the shock wave crystallization of Fe-B-Si and Fe-Mo-B-Si alloy, it was found that the finery effect of crystal size, the ability of preventing the growth of crystal and stabilization of the non-crystalline state produced by addition of element Cu and Nb are lost.
应用XRD, DSC及TEM等技术,将FINEMET非晶合金的激波晶化与退火晶化及不含Cu,Nb的Fe-B-Si和Fe-Mo-B-Si合金的激波晶化作了对比研究结果表明,该合金的激波晶化除了具有极高的转变速率和相当完全的晶化度外,合金元素Cu和Nb在退火晶化时具有的细化晶粒、阻止晶粒长大和稳定非晶态的三个作用均失效了采用激波作用下非晶固体转变成流体状态的模型可以定性地解释这一现
4)  shock wave nanocrystallization
激波纳米晶化
5)  crystallization [英]['kristəlai'zeiʃən]  [美][,krɪstḷɪ'zeʃən]
非晶晶化
1.
Improvements of the Phase Transformation Kinetic Models and Their Application to the Crystallization of Amorphous Alloy;
相变动力学模型的改进及其在非晶晶化过程中的应用
2.
The effects of Nb addition on Fe74Al4Ga2P12B4Si4 amorphous alloys crystallization were investigated by the way of XRD,DSC and SEM.
利用X射线衍射(XRD)和差热分析(DSC)方法试验研究了Nb元素对Fe-(Al,Ga)-(P,C,Si,B)系合金非晶晶化的影响。
3.
The crystallization of amorphous alloys predestinates the microstructure and magnetic properties of the melt spun nanocomposite rare earth permanent magnets.
快淬双相纳米复合稀土永磁材料非晶晶化过程决定了材料的微观组织和磁性能。
6)  amorphous crystallization
非晶晶化
补充资料:晶波
1.闪亮的水波。
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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