Low cycle fatigue (LCF) crack initiation, propagation and damage behaviors of TC21 alloy with basketweave microstructure were investigated. The process of LCF damage was observed by a long-focus optical microscopic imaging system, and fatigue crack propagation was analyzed through in-situ SEM fatigue. The results indicated that LCF crack damage displayed different sensitivity to cyclic stress. LCF microcracks initiated from slip bands and propagated through the microcrack coalescences at high stress, while LCF cracks tended to initiate at the αL/β interface and connect with these interface microcracks. Furthermore, the LCF damage model was established on the basis of Lemaitre damage theory. When the maximum stress exceeded yield stress, LCF...
The growth behavior of naturally-initiated small cracks in single edge notched tensile (SENT) specim...
Real components are usually subjected to variable amplitude fatigue, and yet the deformation microme...
It is of significance to reveal the low-cycle fatigue deformation mechanism of titanium alloy with t...
Low cycle fatigue (LCF) behaviors of TC21 alloy with a bi-lamellar basketweave microstructure were i...
This paper discusses the effect of basketweave microstructure on the very high cycle fatigue behavio...
The low cycle fatigue (LCF) property and low cycle dwell fatigue (LCDF) property of bimodal structur...
Cyclic heterogeneous deformation, slip characteristics and crack nucleation with different microstru...
Very high cycle fatigue (VHCF) tests were carried out under variable amplitude loading for TC21 tita...
The effect of low cycle fatigue (LCF) predamage on the subsequent very high cycle fatigue (VHCF) beh...
α/β titanium alloys are choice materials for aeronautical and automotive industries due to their hig...
Alpha phase exhibits equiaxed or lamellar morphologies with size from submicron to microns in an alp...
All manufacturers of gas turbines, and indeed, of engineering systems, suffer from both managed and ...
High-cycle fatigue (HCF) is a critical property of metastable β Ti alloys in aerospace applications....
The behavior of crack initiation and early growth in high-cycle fatigue (HCF) and very-high-cycle fa...
The mechanisms of low-cycle, fatigue crack nucleation and early growth were investigated at room tem...
The growth behavior of naturally-initiated small cracks in single edge notched tensile (SENT) specim...
Real components are usually subjected to variable amplitude fatigue, and yet the deformation microme...
It is of significance to reveal the low-cycle fatigue deformation mechanism of titanium alloy with t...
Low cycle fatigue (LCF) behaviors of TC21 alloy with a bi-lamellar basketweave microstructure were i...
This paper discusses the effect of basketweave microstructure on the very high cycle fatigue behavio...
The low cycle fatigue (LCF) property and low cycle dwell fatigue (LCDF) property of bimodal structur...
Cyclic heterogeneous deformation, slip characteristics and crack nucleation with different microstru...
Very high cycle fatigue (VHCF) tests were carried out under variable amplitude loading for TC21 tita...
The effect of low cycle fatigue (LCF) predamage on the subsequent very high cycle fatigue (VHCF) beh...
α/β titanium alloys are choice materials for aeronautical and automotive industries due to their hig...
Alpha phase exhibits equiaxed or lamellar morphologies with size from submicron to microns in an alp...
All manufacturers of gas turbines, and indeed, of engineering systems, suffer from both managed and ...
High-cycle fatigue (HCF) is a critical property of metastable β Ti alloys in aerospace applications....
The behavior of crack initiation and early growth in high-cycle fatigue (HCF) and very-high-cycle fa...
The mechanisms of low-cycle, fatigue crack nucleation and early growth were investigated at room tem...
The growth behavior of naturally-initiated small cracks in single edge notched tensile (SENT) specim...
Real components are usually subjected to variable amplitude fatigue, and yet the deformation microme...
It is of significance to reveal the low-cycle fatigue deformation mechanism of titanium alloy with t...