Complex Assessment of X-ray Diffraction in Crystals with Face-Centered Silicon Carbide Lattice; Crystals; Vol. 13, iss. 3

Bibliografiske detaljer
Parent link:Crystals
Vol. 13, iss. 3.— 2023.— [528, 16 p.]
Institution som forfatter: Национальный исследовательский Томский политехнический университет Инженерная школа новых производственных технологий Отделение материаловедения
Andre forfattere: Bosikov I. I. Igor Ivanovich, Martyushev N. V. Nikita Vladimirovich, Klyuev R. V. Roman Vladimirovich, Tynchenko V. S. Vadim Sergeevich, Kukartsev V. A. Viktor Alekseevich, Eremeeva S. V. Svetlana Vladimirovna, Karlina A. I. Antonina Igorevna
Summary:Title screen
X-ray diffraction analysis is essential in studying stacking faults. Most of the techniques used for this purpose are based on theoretical studies. These studies suggest that the observed diffraction patterns are caused by random stacking faults in crystals. In reality, however, the condition of randomness for stacking faults may be violated. The purpose of the study was to develop a technique that can be used to calculate the diffraction effects of the axis of the thin plates of twin, new phases, as well as other variations in defective structures. Materials and methods. This was achieved through modern X-ray diffraction methods using differential equations (transformations and Fourier transforms) and the construction of the Ewald sphere, mathematical analysis, mathematical logic, and mathematical modeling (complex Markov chain). Conclusion. The study made it possible to develop a technique for the calculation of the diffraction effects of the axis of the thin plates of twin, new phases and other variations in defective structures. The technique makes it possible to solve several complex, urgent problems related to the calculation of X-ray diffraction for crystals with face-centered lattices containing different types of stacking faults. At the same time, special attention was paid to the correlations between the relative positions of faults. The calculations showed that the proposed method can help to determine the nature and structure of stacking faults by identifying the partial and vertex dislocations limiting them in twin crystals with a face-centered cubic structure of silicon carbide based on X-ray diffraction analysis.
Sprog:engelsk
Udgivet: 2023
Fag:
Online adgang:http://earchive.tpu.ru/handle/11683/132532
https://doi.org/10.3390/cryst13030528
Format: Electronisk Book Chapter
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=669579

MARC

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200 1 |a Complex Assessment of X-ray Diffraction in Crystals with Face-Centered Silicon Carbide Lattice  |f I. I. Bosikov, N. V. Martyushev, R. V. Klyuev [et al.] 
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300 |a Title screen 
320 |a [References: 39 tit.] 
330 |a X-ray diffraction analysis is essential in studying stacking faults. Most of the techniques used for this purpose are based on theoretical studies. These studies suggest that the observed diffraction patterns are caused by random stacking faults in crystals. In reality, however, the condition of randomness for stacking faults may be violated. The purpose of the study was to develop a technique that can be used to calculate the diffraction effects of the axis of the thin plates of twin, new phases, as well as other variations in defective structures. Materials and methods. This was achieved through modern X-ray diffraction methods using differential equations (transformations and Fourier transforms) and the construction of the Ewald sphere, mathematical analysis, mathematical logic, and mathematical modeling (complex Markov chain). Conclusion. The study made it possible to develop a technique for the calculation of the diffraction effects of the axis of the thin plates of twin, new phases and other variations in defective structures. The technique makes it possible to solve several complex, urgent problems related to the calculation of X-ray diffraction for crystals with face-centered lattices containing different types of stacking faults. At the same time, special attention was paid to the correlations between the relative positions of faults. The calculations showed that the proposed method can help to determine the nature and structure of stacking faults by identifying the partial and vertex dislocations limiting them in twin crystals with a face-centered cubic structure of silicon carbide based on X-ray diffraction analysis. 
461 |t Crystals 
463 |t Vol. 13, iss. 3  |v [528, 16 p.]  |d 2023 
610 1 |a труды учёных ТПУ 
610 1 |a электронный ресурс 
610 1 |a X-ray diffraction 
610 1 |a crystals with a face-centered lattice 
610 1 |a X-ray structural analysis 
610 1 |a wave amplitude 
610 1 |a multi-layer stacking fault 
610 1 |a solid amorphous bodies 
701 1 |a Bosikov  |b I. I.  |g Igor Ivanovich 
701 1 |a Martyushev  |b N. V.  |c specialist in the field of material science  |c Associate Professor of Tomsk Polytechnic University, Candidate of technical sciences  |f 1981-  |g Nikita Vladimirovich  |3 (RuTPU)RU\TPU\pers\32906  |9 16754 
701 1 |a Klyuev  |b R. V.  |g Roman Vladimirovich 
701 1 |a Tynchenko  |b V. S.  |g Vadim Sergeevich 
701 1 |a Kukartsev  |b V. A.  |g Viktor Alekseevich 
701 1 |a Eremeeva  |b S. V.  |g Svetlana Vladimirovna 
701 1 |a Karlina  |b A. I.  |g Antonina Igorevna 
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