TY - JOUR
T1 - Simultaneous determination of elastic constants and crystallographic orientation in coarse-grained nickel by acoustic spectro-microscopy
AU - Xu, Yang
AU - Aizawa, Tatsuhiko
AU - Kihara, Junji
N1 - Copyright:
Copyright 2017 Elsevier B.V., All rights reserved.
PY - 1997/6
Y1 - 1997/6
N2 - The inverse analysis method is newly developed to determine the elastic stiffness tensor and the crystallographic orientation simultaneously for cubic crystal nickel from the measured angular distribution of surface wave velocity by acoustic spectro-microscopy. In the experiment, the angular dispersion of Rayleigh surface wave velocity was measured for six grains. For each grain, the inverse analysis was iteratively performed to deduce both the elastic constants and the crystallographic orientation, which finally provided the best-fitted theoretical dispersion curve to the original measured one. The obtained average elastic stiffness constants for nickel are: C11=245 GPa, C12=152 GPa and C44=124 GPa. The maximum relative error of Cij's was less than 5% among six grains. The crystallographic orientations {α, β, γ} were obtained with the maximum absolute error less than 1°. Sensitivity evaluation of the present inverse analysis to disturbance in Cij and {α, β, γ} was also made to demonstrate robustness of our developed procedure for practical use.
AB - The inverse analysis method is newly developed to determine the elastic stiffness tensor and the crystallographic orientation simultaneously for cubic crystal nickel from the measured angular distribution of surface wave velocity by acoustic spectro-microscopy. In the experiment, the angular dispersion of Rayleigh surface wave velocity was measured for six grains. For each grain, the inverse analysis was iteratively performed to deduce both the elastic constants and the crystallographic orientation, which finally provided the best-fitted theoretical dispersion curve to the original measured one. The obtained average elastic stiffness constants for nickel are: C11=245 GPa, C12=152 GPa and C44=124 GPa. The maximum relative error of Cij's was less than 5% among six grains. The crystallographic orientations {α, β, γ} were obtained with the maximum absolute error less than 1°. Sensitivity evaluation of the present inverse analysis to disturbance in Cij and {α, β, γ} was also made to demonstrate robustness of our developed procedure for practical use.
KW - Acoustic spectro-microscopy
KW - Crystallographic orientation
KW - Cubic material
KW - Elastic constant
KW - Inverse analysis
KW - Nickel
KW - Powell least-square fitting method
KW - Pseudo-surface wave
KW - Rayleigh critical angle
KW - Rayleigh surface wave
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U2 - 10.2320/matertrans1989.38.536
DO - 10.2320/matertrans1989.38.536
M3 - Article
AN - SCOPUS:0031170646
SN - 0916-1821
VL - 38
SP - 536
EP - 545
JO - Materials Transactions, JIM
JF - Materials Transactions, JIM
IS - 6
ER -