TY - JOUR
T1 - Inversion and decoupling of thermo-mechanical deformation in anisotropic materials using the virtual fields method
AU - Ma, Yinji
AU - Yao, Xuefeng
AU - Liu, Xiaoyu
AU - Hao, Wenfeng
AU - Fang, Daining
PY - 2013/6/8
Y1 - 2013/6/8
N2 - In this paper, the inverses of both the elastic constants and the thermal expansion coefficients of anisotropic materials are used to decouple thermo-mechanical deformation using the virtual fields method (VFM). First, a method for inversing and decoupling the thermo-mechanical deformation field under threepoint bending loading is proposed based on the VFM. Second, thermo-mechanical coupled deformation of the three-point bending specimen is simulated by means of the finite-element method, and the inverse of the thermo-mechanical elastic constants are used, which agree well with the reference value. Finally, the influences of the noise level on the accuracy of the thermo-mechanical constants from the VFM are discussed. The results will provide a new method for characterizing thermo-mechanical elastic constants and decoupling the thermo-mechanical deformation of anisotropic materials under high-temperature environments.
AB - In this paper, the inverses of both the elastic constants and the thermal expansion coefficients of anisotropic materials are used to decouple thermo-mechanical deformation using the virtual fields method (VFM). First, a method for inversing and decoupling the thermo-mechanical deformation field under threepoint bending loading is proposed based on the VFM. Second, thermo-mechanical coupled deformation of the three-point bending specimen is simulated by means of the finite-element method, and the inverse of the thermo-mechanical elastic constants are used, which agree well with the reference value. Finally, the influences of the noise level on the accuracy of the thermo-mechanical constants from the VFM are discussed. The results will provide a new method for characterizing thermo-mechanical elastic constants and decoupling the thermo-mechanical deformation of anisotropic materials under high-temperature environments.
KW - Anisotropic materials
KW - Decoupling
KW - Inversion
KW - Thermo-mechanical coupling
KW - Virtual fields method
UR - http://www.scopus.com/inward/record.url?scp=84877279117&partnerID=8YFLogxK
U2 - 10.1098/rspa.2013.0124
DO - 10.1098/rspa.2013.0124
M3 - Article
AN - SCOPUS:84877279117
SN - 1364-5021
VL - 469
JO - Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences
JF - Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences
IS - 2154
M1 - 20130124
ER -