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1)  amorphous & nanocrystalline
非晶纳米晶材料
1.
The current industrial situation of amorphous & nanocrystalline alloy made by rapidly quenching technology is introduced, including the recent research, development and application in this field.
介绍了国内外利用快淬技术制备非晶纳米晶合金材料的产业现状以及这一领域材料工艺技术的研究开发动态和非晶纳米晶材料的应用情况。
2)  amorphous nanomaterial
非晶纳米材料
3)  amorphous and nanocrystalline soft magnetic material
非晶纳米晶软磁材料
4)  nanocrystalline material
纳米晶材料
1.
Compared with the normal materials with the same composition, nanocrystalline materials possess much higher strength but lower ductility.
纳米晶材料的强度远高于同成分的普通材料,而塑性却低于同成分的普通材料;纳米晶材料可在更低的温度、更高的应变速率下发生超塑性变形。
2.
The electrodepositing technology for preparing nanocrystalline materials is a process in which suitable technological conditions were controlled, and nanocrystalline composites with many excellent properties were obtained.
纳米晶材料电沉积工艺是在传统电沉积工艺的基础上,通过控制适当的工艺条件,最终获得具有各种性能的纳米晶电沉积层的过程。
3.
A variety of methods for preparing nanocrystalline materials is discussed.
介绍了软化学制备纳米晶材料的各种制备方法及其优缺点。
5)  nanocrystalline materials
纳米晶材料
1.
The electrochemical methods,such as DC,pulse,composite,jet,ultrasonic and brush electrodeposition and their mechanisms for preparation of nanocrystalline materials are described.
介绍了用电沉积技术制备纳米晶材料的方法和机理,如直流电沉积、脉冲电沉积、复合电沉积、喷射电沉积、超声波电沉积和刷镀,展望了电沉积纳米晶材料的应用前景。
2.
The grain growth of nanocrystalline materials is reviewed,the isothermal grain growth kinetic theory of nanocrystalline materials is also addressed.
本文综述了纳米晶材料晶粒长大的研究进展,简述了纳米晶材料晶粒长大的等温动力学理论,讨论了溶质原子、孔洞、第二相粒子和微观应变对纳米晶材料晶粒长大的影响。
3.
The characteristics of nanocrystalline materials were overviewed as well as its preparation principles and methods.
综述了纳米晶的特点,纳米晶材料电沉积制备的原理和方法,介绍了电沉积纳米晶镍及镍基材料的硬度、拉伸性能、应力、耐磨、耐蚀性及热稳定性等性能研究及其应用现状。
6)  amorphous-nanocrystalline film
非晶纳米晶带材
1.
Characteristic analysis of giant magneto-impedance sensor in amorphous-nanocrystalline film;
非晶纳米晶带材巨磁阻抗磁传感器特性分析
补充资料:阳晶
1.日光﹐亮光。
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