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NATO Advanced Research Workshop on Properties and Applications of Nanocrystalline Alloys from Amorphous Precursors

机译:北约关于非晶态前驱体纳米晶合金的性能和应用的高级研究研讨会

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摘要

Metallic (magnetic and non-magnetic) nanocrystalline materials have been known for over ten years but only recent developments in the research into those complex alloys and their metastable amorphous precursors have created a need to summarize the most important accomplishments in the field. This book is a collection of articles on various aspects of metallic nanocrystalline materials, and an attempt to address this above need. The main focus of the papers is put on the new issues that emerge in the studies of nanocrystalline materials, and, in particular, on (i) new compositions of the alloys, (ii) properties of conventional nanocrystalline materials, (iii) modeling and simulations, (iv) preparation methods, (v) experimental techniques of measurements, and (vi) different modern applications. Interesting phenomena of the physics of nanocrystalline materials are a consequence of the effects induced by the nanocrystalline structure. They include interface physics, the influence of the grain boundaries, the averaging of magnetic anisotropy by exchange interactions, the decrease in exchange length, and the existence of a minimum two-phase structure at the atomic scale. Attention is also paid to the special character of the local atomic ordering and to the corresponding interatomic bonding as well as to anomalies and particularities of electron density distributions, and to the formation of metastable, nanocrystalline (or quasi-crystalline) phases built from exceptionally small grains with special properties. Another important focus of attention are new classes of materials which are not based on new compositions, but rather on the original and special crystalline structure in the nanoscale.
机译:金属(磁性和非磁性)纳米晶体材料已经有十多年的历史了,但是对这些复杂合金及其亚稳非晶前体的研究只有最近的发展,才需要总结该领域最重要的成就。本书收集了有关金属纳米晶体材料各个方面的文章,并试图解决上述需求。论文的主要重点放在纳米晶体材料研究中出现的新问题上,尤其是(i)合金的新成分,(ii)常规纳米晶体材料的性能,(iii)建模和模拟,(iv)制备方法,(v)测量的实验技术以及(vi)不同的现代应用。纳米晶体材料物理学中有趣的现象是纳米晶体结构引起的效应的结果。它们包括界面物理,晶界的影响,通过交换相互作用的磁各向异性平均,交换长度的减少以及原子尺度上最小的两相结构的存在。还应注意局部原子有序的特殊特征和相应的原子间键合以及电子密度分布的异常和特殊性,以及由极小的结构形成的亚稳态,纳米晶(或准晶)相的形成。具有特殊性能的谷物。另一个重要的关注焦点是新型材料,这些材料不是基于新的成分,而是基于纳米级的原始和特殊的晶体结构。

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