TY - JOUR
T1 - Fracture of a finite medium with a circular internal crack under hyperbolic heat conduction-prescribed crack face thermal flux
AU - Wang, B.
PY - 2013
Y1 - 2013
N2 - This paper studies the fracture mechanics of a thermoelastic medium with an internal circular crack subjecting to a prescribed thermal flux. The time varying crack tip thermal stress intensity factor is solved. Solution for the infinite medium under steady heat conduction is given in closed form. Comparisons between the non-Fourier results and the classical Fourier results are made. Numerical results show that the non-Fourier heat model predicts considerable high transient thermal stress intensity factor than the Fourier model. This paper, together with our previous paper entitled fracture of a finite medium with a circular internal crack under hyperbolic heat conduction-prescribed crack face temperature, completes the analysis of a finite medium with a circular internal crack under hyperbolic heat conduction.
AB - This paper studies the fracture mechanics of a thermoelastic medium with an internal circular crack subjecting to a prescribed thermal flux. The time varying crack tip thermal stress intensity factor is solved. Solution for the infinite medium under steady heat conduction is given in closed form. Comparisons between the non-Fourier results and the classical Fourier results are made. Numerical results show that the non-Fourier heat model predicts considerable high transient thermal stress intensity factor than the Fourier model. This paper, together with our previous paper entitled fracture of a finite medium with a circular internal crack under hyperbolic heat conduction-prescribed crack face temperature, completes the analysis of a finite medium with a circular internal crack under hyperbolic heat conduction.
UR - http://handle.uws.edu.au:8081/1959.7/545236
U2 - 10.4028/www.scientific.net/AMR.706-708.1373
DO - 10.4028/www.scientific.net/AMR.706-708.1373
M3 - Article
SN - 1022-6680
VL - 706-708
SP - 1373
EP - 1378
JO - Advanced Materials Research
JF - Advanced Materials Research
ER -