Gradient Structure Formation during Crystallization of Deformed Al87Ni6Nd7 Amorphous Alloy

P. A. Uzhakin, V. V. Chirkova, N. A. Volkov, G. E. Abrosimova
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Abstract

The influence of plastic deformation on the formation of nanocrystals in the Al87Ni6Nd7 amorphous alloy was studied using X-ray diffraction analysis. It has been shown that the preliminary deformation of the amorphous alloy accelerates the crystallization of the amorphous phase and can lead to the formation of smaller nanocrystals compared to heat treatment. The size of nanocrystals and their number depend on the treatment conditions of the amorphous phase: when preliminary deformation is used, the size of nanocrystals formed during annealing is smaller than that in an undeformed sample and the proportion of nanocrystals is slightly higher. In samples subjected to preliminary deformation by rolling, a gradient structure is formed: the proportion of nanocrystals decreases with distance from the surface into the depth of the sample. The size of nanocrystals changes slightly with changing distance from the sample surface. The results show that preliminary plastic deformation can be an effective method to obtain a nanocrystalline structure with different proportion and sizes of nanocrystals in the amorphous phase. This is important for creating highly functional materials with outstanding physicochemical properties. The results obtained significantly expand the existing understanding of the mechanisms of formation of nanocrystals in the amorphous phase under external influences.

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变形Al87Ni6Nd7非晶合金结晶过程中梯度结构的形成
采用x射线衍射分析方法研究了塑性变形对Al87Ni6Nd7非晶合金纳米晶形成的影响。结果表明,与热处理相比,非晶合金的初步变形加速了非晶相的结晶,可形成更小的纳米晶。纳米晶的大小和数量取决于非晶相的处理条件:当采用初步变形时,退火过程中形成的纳米晶尺寸小于未变形样品,纳米晶的比例略高。在通过轧制进行初步变形的样品中,形成了梯度结构:纳米晶体的比例随着从表面到样品深度的距离而减少。纳米晶体的尺寸随着与样品表面距离的变化而略有变化。结果表明,初步塑性变形是获得非晶相中不同比例和尺寸的纳米晶结构的有效方法。这对于创造具有卓越物理化学特性的高功能材料非常重要。所得结果极大地扩展了外界影响下非晶相中纳米晶体形成机制的现有认识。
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来源期刊
CiteScore
0.90
自引率
25.00%
发文量
144
审稿时长
3-8 weeks
期刊介绍: Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques publishes original articles on the topical problems of solid-state physics, materials science, experimental techniques, condensed media, nanostructures, surfaces of thin films, and phase boundaries: geometric and energetical structures of surfaces, the methods of computer simulations; physical and chemical properties and their changes upon radiation and other treatments; the methods of studies of films and surface layers of crystals (XRD, XPS, synchrotron radiation, neutron and electron diffraction, electron microscopic, scanning tunneling microscopic, atomic force microscopic studies, and other methods that provide data on the surfaces and thin films). Articles related to the methods and technics of structure studies are the focus of the journal. The journal accepts manuscripts of regular articles and reviews in English or Russian language from authors of all countries. All manuscripts are peer-reviewed.
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