Some TiAl3 whiskers are found to be produced simultaneously during the formation process of TiB2 Particulates fabricated by in situ reaction in molten aluminum. The thec t of temperature of molten aluminum on the morp...Some TiAl3 whiskers are found to be produced simultaneously during the formation process of TiB2 Particulates fabricated by in situ reaction in molten aluminum. The thec t of temperature of molten aluminum on the morphologies of the TiAl3 whiskers and the growth mechanism of the whiskers are studied in this paper. The results show that the aspect rutio of the TiAl3 whiskers decreases with the increase of the temperoture. The growth of the whiskers is proved to be controlled by a Vapor-LiquidSoltd (VLS) mechanism. The titanium and aluminum atoms in the catalytic droplet,however, have been coofrmed to react with each othen which is dtherent from other whlskcrs growing by a VLS mcchanism where the compostion in the catalytic droplet is a constant.展开更多
The compression fracture behavior and mechanical properties of Ti80Al alloy and Ti48Al alloy solidified under 5.5GPa pressure condition were studied. The results show that the fracture of Ti80Al alloy solidified und...The compression fracture behavior and mechanical properties of Ti80Al alloy and Ti48Al alloy solidified under 5.5GPa pressure condition were studied. The results show that the fracture of Ti80Al alloy solidified under high pressure has the characters of cleavage fracture and intergranular crack differing with cleavage fracture of that under vacuum. The fracture of Ti48Al alloy solidified under high pressure is cleavage fracture like that under vacuum. The compression strength of vacuum condition solidified Ti80Al alloy is 316MPa. However when the solidification pressure is increased to 5.5GPa, the compression strength of Ti80Al is increased to 440MPa. In the mean time, during ultra high pressure solidification the hardness of Ti80Al alloy and Ti48Al alloy increase from 8.755GPa and 5.408GPa under vacuum to 9.572GPa and 6.227GPa respectively, and elastic modulus also increase from 279.3GPa and 232.3GPa under vacuum to 295.8GPa to 252.9GPa respectively.展开更多
The phase constitutes and microstructures of TiAl3 intermetallic compound solidified under vacuum and 5.5GPa pressure conditions were investigated. The results show that the phase constitutes of Ti80Al alloy solifif...The phase constitutes and microstructures of TiAl3 intermetallic compound solidified under vacuum and 5.5GPa pressure conditions were investigated. The results show that the phase constitutes of Ti80Al alloy solifified under vacuum and ultra high pressure are the same as those of TiAl3+Al. There are no new phases generated. However, under ultra high pressure solidification, the morphology of TiAl3 changes obviously. The shape of TiAl3 changes from pin-like to massive. Furthermore, Ti content in Al increases under ultra high pressure solidification. Analysis results indicate that the change of microstructure under ultra high pressure is involved in the influence of solute diffusion coefficient, the microstructure and stability of the solid/liquid interface with pressure mainly.展开更多
Cold-rolled Ti/Al laminated composites were annealed at 525−625℃for 0−128 h,and the interfacial microstructure evolution was investigated.The results indicate that only the TiAl_(3) phase was formed at the Ti/Al inte...Cold-rolled Ti/Al laminated composites were annealed at 525−625℃for 0−128 h,and the interfacial microstructure evolution was investigated.The results indicate that only the TiAl_(3) phase was formed at the Ti/Al interface;most of TiAl_(3) grains were fine equiaxed with average sizes ranging from hundreds of nanometers to several microns and the TiAl_(3) grain size increased with increasing annealing time and/or temperature,but the effect of annealing temperature on the TiAl_(3) grain size was far greater than that of annealing time.The growth of the TiAl_(3) phase consisted of two stages.The initial stage was governed by chemical reaction with a reaction activation energy of 195.75 kJ/mol,and the reaction rate constant of the TiAl_(3) phase was larger as the Ti/Al interface was bonded with fresh surfaces.At the second stage,the growth was governed by diffusion,the diffusion activation energy was 33.69 kJ/mol,and the diffusion growth rate constant of the TiAl_(3) phase was mainly determined by the grain boundary diffusion owing to the smaller TiAl_(3) grain size.展开更多
文摘Some TiAl3 whiskers are found to be produced simultaneously during the formation process of TiB2 Particulates fabricated by in situ reaction in molten aluminum. The thec t of temperature of molten aluminum on the morphologies of the TiAl3 whiskers and the growth mechanism of the whiskers are studied in this paper. The results show that the aspect rutio of the TiAl3 whiskers decreases with the increase of the temperoture. The growth of the whiskers is proved to be controlled by a Vapor-LiquidSoltd (VLS) mechanism. The titanium and aluminum atoms in the catalytic droplet,however, have been coofrmed to react with each othen which is dtherent from other whlskcrs growing by a VLS mcchanism where the compostion in the catalytic droplet is a constant.
文摘The compression fracture behavior and mechanical properties of Ti80Al alloy and Ti48Al alloy solidified under 5.5GPa pressure condition were studied. The results show that the fracture of Ti80Al alloy solidified under high pressure has the characters of cleavage fracture and intergranular crack differing with cleavage fracture of that under vacuum. The fracture of Ti48Al alloy solidified under high pressure is cleavage fracture like that under vacuum. The compression strength of vacuum condition solidified Ti80Al alloy is 316MPa. However when the solidification pressure is increased to 5.5GPa, the compression strength of Ti80Al is increased to 440MPa. In the mean time, during ultra high pressure solidification the hardness of Ti80Al alloy and Ti48Al alloy increase from 8.755GPa and 5.408GPa under vacuum to 9.572GPa and 6.227GPa respectively, and elastic modulus also increase from 279.3GPa and 232.3GPa under vacuum to 295.8GPa to 252.9GPa respectively.
文摘The phase constitutes and microstructures of TiAl3 intermetallic compound solidified under vacuum and 5.5GPa pressure conditions were investigated. The results show that the phase constitutes of Ti80Al alloy solifified under vacuum and ultra high pressure are the same as those of TiAl3+Al. There are no new phases generated. However, under ultra high pressure solidification, the morphology of TiAl3 changes obviously. The shape of TiAl3 changes from pin-like to massive. Furthermore, Ti content in Al increases under ultra high pressure solidification. Analysis results indicate that the change of microstructure under ultra high pressure is involved in the influence of solute diffusion coefficient, the microstructure and stability of the solid/liquid interface with pressure mainly.
基金the financial supports from the S&T Program of Hebei Province,China(No.20373901D)the National Natural Science Foundation of China(Nos.51807047,51804095)+2 种基金the National Science Foundation of Hebei Province,China(No.E2019402433)the Youth Top Talents Science and Technology Research Project of Hebei Province University,China(No.BJ2019003)the Research and Development Project of Science and Technology of Handan City,China(No.19422111008-19).
文摘Cold-rolled Ti/Al laminated composites were annealed at 525−625℃for 0−128 h,and the interfacial microstructure evolution was investigated.The results indicate that only the TiAl_(3) phase was formed at the Ti/Al interface;most of TiAl_(3) grains were fine equiaxed with average sizes ranging from hundreds of nanometers to several microns and the TiAl_(3) grain size increased with increasing annealing time and/or temperature,but the effect of annealing temperature on the TiAl_(3) grain size was far greater than that of annealing time.The growth of the TiAl_(3) phase consisted of two stages.The initial stage was governed by chemical reaction with a reaction activation energy of 195.75 kJ/mol,and the reaction rate constant of the TiAl_(3) phase was larger as the Ti/Al interface was bonded with fresh surfaces.At the second stage,the growth was governed by diffusion,the diffusion activation energy was 33.69 kJ/mol,and the diffusion growth rate constant of the TiAl_(3) phase was mainly determined by the grain boundary diffusion owing to the smaller TiAl_(3) grain size.