Application of Multifractal Analysis for Research of Structural Materials

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
M. Kheifetz, V. Senyut, A. Kolmakov, B. Bazrov, S. Klimenko, M. Kopeikina
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引用次数: 1

Abstract

Application of multifractal analysis for qualitative and quantitative description of structural materials is demonstrated. This makes it possible to evaluate the system’s characteristics of structures and to characterize the processes of self-organization in the materials. Formation of friction surface structures for aluminum alloys with Al2O3 and SiC additives in the scuffing mode is considered under comparable thermodynamic conditions. The addition of SiC, in comparison with Al2O3 , is less conducive to fragmentation and increase in the frequency of seizure and rupture processes. The addition of graphite into a composite material reinforced with SiC leads to increase in the degree of non-equilibrium of the thermodynamic conditions for the formation of the structures. Additional introduction of graphite further enhances the difference between materials with additions of Al2O3 and SiC, and this leads to the formation of the least ordered structures of the friction surface.
多重分形分析在结构材料研究中的应用
论证了多重分形分析在结构材料定性和定量描述中的应用。这使得评估系统的结构特征和表征材料中的自组织过程成为可能。在相似的热力学条件下,考虑了Al2O3和SiC添加剂在磨损模式下铝合金摩擦表面结构的形成。与Al2O3相比,SiC的加入对断裂的影响较小,并增加了断裂和断裂的频率。在碳化硅增强复合材料中加入石墨导致结构形成热力学条件的非平衡程度增加。石墨的进一步引入进一步增强了Al2O3和SiC添加材料之间的差异,这导致了摩擦表面最无序结构的形成。
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来源期刊
Nonlinear Phenomena in Complex Systems
Nonlinear Phenomena in Complex Systems PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.90
自引率
25.00%
发文量
32
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