10th International School-Conference on Materials for Extreme Environment: Development, Production and Application | |
Modern methods of experimental construction of texture complete direct pole figures by using X-ray data | |
Isaenkova, M.^1 ; Perlovich, Yu^1 ; Fesenko, V.^1 | |
National Research Nuclear University MEPhI, Moscow Engineering Physics Institute, Kashirskoe Shosse 31, Moscow | |
115409, Russia^1 | |
关键词: Computer processing; Hexagonal crystal structure; Integral parameters; Perpendicular-plane; Physical and mechanical properties; Stereographic projection; Textural parameters; Texture heterogeneities; | |
Others : https://iopscience.iop.org/article/10.1088/1757-899X/130/1/012055/pdf DOI : 10.1088/1757-899X/130/1/012055 |
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来源: IOP | |
【 摘 要 】
Currently used methods for constructing texture complete direct pole figure (CDPF) based on the results of X-ray diffractometric measurements were considered with respect to the products of Zr-based alloys and, in particular, used in a nuclear reactor cladding tubes, for which the accuracy of determination of integral texture parameters is of the especial importance. The main attention was devoted to technical issues which are solved by means of computer processing of large arrays of obtained experimental data. Among considered questions there are amendments of the defocusing, techniques for constructing of complete direct pole figures and determination of integral textural parameters. The methods of reconstruction of complete direct pole figures by partial direct pole figures recorded up to tilt angles of sample ψ=70-80°: the method of extrapolation of data to an uninvestigated region of the stereographic projection, and the method of «sewing» of partial pole figures measured for three mutually perpendicular plane sections of the product. The limits of applicability of these methods, depending on the shape of the test product and the degree of inhomogeneity of the layer-by-layer texture, were revealed. On the basis of a large number of experimental data, the accuracy of the integral parameters used for calculation of the physical and mechanical properties of metals with a hexagonal crystal structure was found to be equal to 0.02, when taking into account the texture heterogeneity of regular products from Zr-based alloys.
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