3rd International Youth Scientific Forum with International Participation "New Materials" | |
Development of phase analysis methods of impurity elements in alloys based on iron and nickel | |
Andreeva, N.A.^1 ; Anuchkin, S.N.^1 ; Volchenkova, V.A.^1 ; Kazenas, E.K.^1 ; Penkina, T.N.^1 ; Fomina, A.A.^1 | |
Baikov Institute of Metallurgy and Materials Science, Russian Academy of Sciences (IMET RAS), Russia^1 | |
关键词: Alkali metal salts; Analytical parameters; Classical schemes; Concentration ranges; Crystallization process; Metrological characteristics; Microwave systems; Relative standard deviations; | |
Others : https://iopscience.iop.org/article/10.1088/1757-899X/347/1/012003/pdf DOI : 10.1088/1757-899X/347/1/012003 |
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来源: IOP | |
【 摘 要 】
Using the method of AES with ICP, new methods have been developed for quantifying the content of various forms of existence of impurity elements: Al-Al2O3; Zr-ZrO2in alloys based on iron (Fe-Sn) and nickel (Ni-Sn). Open systems were used to dissolve Al and Zr. To translate difficult-to-open aluminum oxides (corundum) and zirconium oxide (baddeleyite) into the solution, accelerated techniques were developed using the microwave system Mars 5. To confirm the completeness of the dissolution of oxides, a classical scheme of alloy fusion with alkali metal salts was used. Optimal analytical parameters for determining the elements: Al and Zr were chosen. The influence of matrix elements (iron and nickel) and methods of its elimination were studied. This made it possible to determine the elements in a wide concentration range from 1 • 10-3to n% Al and from 1 • 10-4to n% Zr without preliminary separation of the matrix with good metrological characteristics. The relative standard deviation (Sr) does not exceed 0,2. The separate determination of the contents of aluminum and aluminium oxide in the model melt of Fe-Sn-Al2O3and zirconium and zirconium oxide in the Ni-Sn-ZrO2model melt allowed us to estimate the number of nanoparticles participating in the heterophase interaction with tin and retired to the interface in the form of ensembles and the number of nanoparticles present in the melt and affecting the crystallization process and the structure of the metal.
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