使用磁性纳米技术设计多孔材料的指定参数

IF 0.6
Mykola Riabchykov, Tetiana Furs, Alexandr Alexandrov, Iryna Tsykhanovska, Olha Hulai, Vasylyna Shemet
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引用次数: 0

摘要

研究解决了在磁场条件下制造过程中气孔参数的调节问题。介绍了以二价和三价铁氧化物为基料合成磁性纳米组分的工艺。纳米组分的使用允许改善创建多孔材料的条件。研制了一种可调磁感应强度装置,用于在磁场中制备多孔材料。在磁场条件下对多孔材料结构与纳米粉含量的研究表明,多孔材料的结构与磁性参数有明显的相关性。当纳米组分含量增加到0.3%,磁场感应强度增加到2.5 mT时,孔隙尺寸的分散性降低了8 ~ 10倍,孔隙密度增加了15 ~ 20倍,孔隙平均直径减小了12 ~ 15倍。提出了不同磁性纳米粉含量和环形电磁铁磁感应强度值下孔隙度参数的数学依赖关系。所获得的依赖关系允许分配磁性技术参数的水平,以确保给定的孔隙度参数。所开发的磁技术制造多孔材料的方法可以提高质量并确保所需的孔隙率水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Specified Parameters in Designing Porous Materials Using Magnetic Nanotechnologies
The research is devoted to solving the problem of regulating the porosity parameters during the manufacturing process under magnetic field conditions. The process of synthesizing magnetic nanocomponents based on a mixture of divalent and trivalent iron oxides was given. The use of nanocomponents allowed for improving the conditions for creating porous materials. A device with adjustable magnetic induction was developed to produce porous materials in a magnetic field. The study of the porous material’s structure with the nanopowder content in the magnetic field conditions showed a clear dependence of the structure on the magnetic parameters. When the content of nanocomponents increased to 0.3 %, and the magnetic field induction increased to 2.5 mT, the dispersion of pore sizes decreased by 8–10 times, the density of pores – increased by 15–20 times, and the average diameter of pores – decreased by 12–15 times. Mathematical dependencies that determine the porosity parameters for different values of the magnetic nanopowder content and the level of magnetic induction in the ring electromagnet were proposed. The obtained dependencies allowed for assigning the level of magnetic technological parameters to ensure the given porosity parameters. The developed methods of magnetic technology for creating porous materials can increase the quality and ensure the required porosity level.
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来源期刊
CiteScore
0.40
自引率
0.00%
发文量
15
审稿时长
12 weeks
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