Alpha phase exhibits equiaxed or lamellar morphologies with size from submicron to microns in an alpha-beta titanium alloy. Cyclic deformation, slip characteristics and crack nucleation during fatigue in different microstructures of TC21 alloy (Ti-6Al-2Sn-2Zr-3Mo-1Cr-2Nb-0.1Si) were systematically investigated and analyzed. During low-cycle fatigue, equiaxed microstructure (EM) in TC21 alloy exhibits higher strength, ductility and longer low-cycle fatigue life than those of the lamellar microstructure (LM). There are more voids in the single lamellar alpha than the equiaxed alpha grains. As a result, voids more easily link up to form crack in the lamellar alpha phase than the equiaxed alpha phase. However, during high-cycle fatigue, the fin...
An experimental study is conducted to examine the crack tip/microstructure interactions in lamellar ...
Dislocation interactions at the crack nucleation site were investigated in near-alpha titanium alloy...
Titanium alloys have been widely used as superior engineering materials because of their high specif...
Alpha phase exhibits equiaxed or lamellar morphologies with size from submicron to microns in an alp...
Cyclic heterogeneous deformation, slip characteristics and crack nucleation with different microstru...
Traditionally, equiaxed alpha grains rather than lamellar microstructure (LM) domains in titanium al...
Titanium alloys are increasingly used for structural applications in transportation engineering (aer...
The mechanical properties of Ti-6Al-4V alloy are affected by its microstructures. However, the effec...
For titanium alloys, crack initiation as a result of plastic strain accumulation has been shown to g...
Beta processed microstructures of titanium alloys consisting of Widmanstatten structures offer attra...
Low cycle fatigue (LCF) behaviors of TC21 alloy with a bi-lamellar basketweave microstructure were i...
In the very high cycle fatigue regime, the location of crack initiation in titanium alloys is known ...
The present work deals with the room and high temperature microstructure evolutions of a near alpha ...
This paper discusses the effect of basketweave microstructure on the very high cycle fatigue behavio...
The main objective of the present investigation is to study the individual effect of alpha(2) morpho...
An experimental study is conducted to examine the crack tip/microstructure interactions in lamellar ...
Dislocation interactions at the crack nucleation site were investigated in near-alpha titanium alloy...
Titanium alloys have been widely used as superior engineering materials because of their high specif...
Alpha phase exhibits equiaxed or lamellar morphologies with size from submicron to microns in an alp...
Cyclic heterogeneous deformation, slip characteristics and crack nucleation with different microstru...
Traditionally, equiaxed alpha grains rather than lamellar microstructure (LM) domains in titanium al...
Titanium alloys are increasingly used for structural applications in transportation engineering (aer...
The mechanical properties of Ti-6Al-4V alloy are affected by its microstructures. However, the effec...
For titanium alloys, crack initiation as a result of plastic strain accumulation has been shown to g...
Beta processed microstructures of titanium alloys consisting of Widmanstatten structures offer attra...
Low cycle fatigue (LCF) behaviors of TC21 alloy with a bi-lamellar basketweave microstructure were i...
In the very high cycle fatigue regime, the location of crack initiation in titanium alloys is known ...
The present work deals with the room and high temperature microstructure evolutions of a near alpha ...
This paper discusses the effect of basketweave microstructure on the very high cycle fatigue behavio...
The main objective of the present investigation is to study the individual effect of alpha(2) morpho...
An experimental study is conducted to examine the crack tip/microstructure interactions in lamellar ...
Dislocation interactions at the crack nucleation site were investigated in near-alpha titanium alloy...
Titanium alloys have been widely used as superior engineering materials because of their high specif...