|Microstructure and grain orientation evolution of a specially shaped shroud during directional solidification process|
|H. Q. Hao; W. G. Jiang; G. Xie; G. Zhang; Y. Z. Lu; J. Zhang; L. H. Lou
|Source Publication||Progress in Natural Science-Materials International
|Abstract||The microstructure and the grain orientations of one shroud prepared by directional solidification process have been investigated using metallographic method and electronic backscatter diffraction (EBSD). The results indicate that the solidification process of the tested shroud is composed of three steps: dendritic branching, the break-up and drift of the dendrite arms and the solidification of the residual liquid. Misoriented grains were formed between the primarily solidified dendrite stems during the process of recalescence which was caused by the accumulation of the solidification latent heat. A low angle grain boundary of 6 degrees was produced across the impinging dendrite fronts. (c) 2013 Chinese Materials Research Society. Production and hosting by Elsevier B.V. All rights reserved.|
; jiang, weiguo
; xie, guang
; zhang, gong
; lu, yuzhang
; zhang, jian
; lou, langhong] chinese acad sci, inst met res, shenyang 110016, peoples r china.
; zhang, j (reprint author), chinese acad sci, inst met res, shenyang 110016, peoples r china.
H. Q. Hao,W. G. Jiang,G. Xie,et al. Microstructure and grain orientation evolution of a specially shaped shroud during directional solidification process[J]. Progress in Natural Science-Materials International,2013,23(2):211-215.
H. Q. Hao.,W. G. Jiang.,G. Xie.,G. Zhang.,Y. Z. Lu.,...&L. H. Lou.(2013).Microstructure and grain orientation evolution of a specially shaped shroud during directional solidification process.Progress in Natural Science-Materials International,23(2),211-215.
H. Q. Hao,et al."Microstructure and grain orientation evolution of a specially shaped shroud during directional solidification process".Progress in Natural Science-Materials International 23.2(2013):211-215.
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