Probing single crystal orientation by X-ray diffraction for nickel-based superalloys

•Effects of cutting direction and blade shape on deviation angle are discussed.•RO-XRD and BRL-XRD could give a precise primary orientation angle for the blade.•Two pairs of diffraction peaks developed in single crystal is explained. The deviation angles of Ni-based single crystal superalloys are in...

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Published inResults in physics Vol. 29; p. 104769
Main Authors Wang, Yumin, Liu, Zhongli, Qiao, Liang, Li, Shuangming
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.10.2021
Elsevier
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Abstract •Effects of cutting direction and blade shape on deviation angle are discussed.•RO-XRD and BRL-XRD could give a precise primary orientation angle for the blade.•Two pairs of diffraction peaks developed in single crystal is explained. The deviation angles of Ni-based single crystal superalloys are investigated by two techniques of rotating orientation X-ray diffraction (RO-XRD) and back-reflection Laue X-ray diffraction (BRL-XRD). The remarkable agreement between the RO-XRD and BRL-XRD methods provides strong evidence that the cutting direction has a significant effect on the deviation angle. Regardless of the deviation angle, the primary orientation angle is presented to characterize the inherent orientation changes in Ni-based single crystal superalloy, and it eliminates the effects of cutting direction. Furthermore, two pairs of diffraction peaks of the RO-XRD pattern could be developed in Ni-based single crystal superalloy, although these peaks are generally considered to take place in a bicrystal.
AbstractList The deviation angles of Ni-based single crystal superalloys are investigated by two techniques of rotating orientation X-ray diffraction (RO-XRD) and back-reflection Laue X-ray diffraction (BRL-XRD). The remarkable agreement between the RO-XRD and BRL-XRD methods provides strong evidence that the cutting direction has a significant effect on the deviation angle. Regardless of the deviation angle, the primary orientation angle is presented to characterize the inherent orientation changes in Ni-based single crystal superalloy, and it eliminates the effects of cutting direction. Furthermore, two pairs of diffraction peaks of the RO-XRD pattern could be developed in Ni-based single crystal superalloy, although these peaks are generally considered to take place in a bicrystal.
•Effects of cutting direction and blade shape on deviation angle are discussed.•RO-XRD and BRL-XRD could give a precise primary orientation angle for the blade.•Two pairs of diffraction peaks developed in single crystal is explained. The deviation angles of Ni-based single crystal superalloys are investigated by two techniques of rotating orientation X-ray diffraction (RO-XRD) and back-reflection Laue X-ray diffraction (BRL-XRD). The remarkable agreement between the RO-XRD and BRL-XRD methods provides strong evidence that the cutting direction has a significant effect on the deviation angle. Regardless of the deviation angle, the primary orientation angle is presented to characterize the inherent orientation changes in Ni-based single crystal superalloy, and it eliminates the effects of cutting direction. Furthermore, two pairs of diffraction peaks of the RO-XRD pattern could be developed in Ni-based single crystal superalloy, although these peaks are generally considered to take place in a bicrystal.
ArticleNumber 104769
Author Wang, Yumin
Qiao, Liang
Li, Shuangming
Liu, Zhongli
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CitedBy_id crossref_primary_10_1016_j_ymssp_2024_111255
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Keywords X-ray diffraction
Single crystal superalloy
Directional solidification
Orientation
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Snippet •Effects of cutting direction and blade shape on deviation angle are discussed.•RO-XRD and BRL-XRD could give a precise primary orientation angle for the...
The deviation angles of Ni-based single crystal superalloys are investigated by two techniques of rotating orientation X-ray diffraction (RO-XRD) and...
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StartPage 104769
SubjectTerms Directional solidification
Orientation
Single crystal superalloy
X-ray diffraction
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Title Probing single crystal orientation by X-ray diffraction for nickel-based superalloys
URI https://dx.doi.org/10.1016/j.rinp.2021.104769
https://doaj.org/article/52c0b2c61fd047a496fd8afbc0a693dc
Volume 29
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