LÜ Zhen-zhou, YUE Zhu-feng, FENG Yun-wen. Random-Fuzzy Model for the Ductile/Brittle Transition[J]. Applied Mathematics and Mechanics, 2003, 24(10): 1027-1034.
Citation:
LÜ Zhen-zhou, YUE Zhu-feng, FENG Yun-wen. Random-Fuzzy Model for the Ductile/Brittle Transition[J]. Applied Mathematics and Mechanics, 2003, 24(10): 1027-1034.
LÜ Zhen-zhou, YUE Zhu-feng, FENG Yun-wen. Random-Fuzzy Model for the Ductile/Brittle Transition[J]. Applied Mathematics and Mechanics, 2003, 24(10): 1027-1034.
Citation:
LÜ Zhen-zhou, YUE Zhu-feng, FENG Yun-wen. Random-Fuzzy Model for the Ductile/Brittle Transition[J]. Applied Mathematics and Mechanics, 2003, 24(10): 1027-1034.
A large sample of experiments was carried out to study influence of stress triaxiality and temperature on the growth of micro voids and the ductile/brittle transition(DBT)behavior of 40Cr steel.A random-fuzzy model was put forward for the transition.It is assumed that the ductile fracture is controlled by the micro void mechanism,and the critical void growth ratio can be used as the criterion of ductile fracture.The brittle fracture is modeled by an embedded penny crack.A micro stress intensity and the fracture characteristic length of the brittle fracture was then presented and calculated. The DBT is completed by the two mechanisms,which exists in the fracture of all specimens simultaneously.The distributions of model parameters were measured experimentally.A random model and a random-fuzzy model for DBT were presented.The comparison between the calculated and experimental results shows that the random-fuzzy model can model the DBT satisfactorily.
Pitchie R O, Knoff J F, Rice J R. On the relationship between critical tensile stress and fracture toughness in mild steel[J].J Mech Phys Solids,1973,2(2) :195-206.
YUE Zhu-feng,ZHENG Chang-qing. Effect to triaxiality and temperature on void growth in a smooth and notched 40Cr steel bar[J]. Theor Appl Fract Mech,1995,22(2):139-150.
[7]
Rice J R, Tracey D M. On the ductile enlargement of voids in triaxial stress field[J]. J Mech Phys Solids, 1969,17(2) :201-217.
[8]
David Brock. Elementary Engineering Fracture Mechanics [M]. Third revised edition. Hangue: Martinus Nijhoff Publisher, 1982.