The diffusion-multiple method was used to determine the composition of Ti−6Al−4V−xMo−yZr alloy(0.45<x<12,0.5<y<14,wt.%),which can obtain an ultrafine α phase.Results show that Ti−6Al−4V−5Mo−7Zr alloy can ...The diffusion-multiple method was used to determine the composition of Ti−6Al−4V−xMo−yZr alloy(0.45<x<12,0.5<y<14,wt.%),which can obtain an ultrafine α phase.Results show that Ti−6Al−4V−5Mo−7Zr alloy can obtain an ultrafineαphase by using the α″phase assisted nucleation.The bimodal microstructure obtained with the heat-treatment process can confer the alloy with a good balance between the strength and plasticity.The deformation mechanism is the dislocation slip and the{1101}twinning in the primary α phase.The strengthening mechanism is α/β interface strengthening.The interface of(0001)α/(110)β has a platform−step structure,whereas(1120)α/(111)βinterface is flat with no steps.展开更多
采用正交试验方法,研究了固溶温度、时效温度和时效时间对φ6.5 mm Ti-1300F合金丝材室温拉伸性能和显微组织的影响。结果表明:经α+β两相区固溶+时效处理后,合金的显微组织由细小等轴初生α相、弥散针状次生α相和β基体组成。时效温...采用正交试验方法,研究了固溶温度、时效温度和时效时间对φ6.5 mm Ti-1300F合金丝材室温拉伸性能和显微组织的影响。结果表明:经α+β两相区固溶+时效处理后,合金的显微组织由细小等轴初生α相、弥散针状次生α相和β基体组成。时效温度对合金强度和塑性的影响最为显著,固溶温度次之,时效时间的影响最小。根据试验结果对热处理工艺进行了优化,经(760~790)℃/1 h,WQ+(500~540)℃/4 h,AC处理后,Ti-1300F合金丝材获得强度和塑性的良好匹配。展开更多
基金Projects(2016YFB0701301,2018YFB0704100)supported by the National Key Technologies R&D Program of ChinaProjects(51901251,51671218,51501229)supported by the National Natural Science Foundation of ChinaProject(2020JJ5750)supported by the Natural Science Foundation of Hunan Province,China。
文摘The diffusion-multiple method was used to determine the composition of Ti−6Al−4V−xMo−yZr alloy(0.45<x<12,0.5<y<14,wt.%),which can obtain an ultrafine α phase.Results show that Ti−6Al−4V−5Mo−7Zr alloy can obtain an ultrafineαphase by using the α″phase assisted nucleation.The bimodal microstructure obtained with the heat-treatment process can confer the alloy with a good balance between the strength and plasticity.The deformation mechanism is the dislocation slip and the{1101}twinning in the primary α phase.The strengthening mechanism is α/β interface strengthening.The interface of(0001)α/(110)β has a platform−step structure,whereas(1120)α/(111)βinterface is flat with no steps.
文摘采用正交试验方法,研究了固溶温度、时效温度和时效时间对φ6.5 mm Ti-1300F合金丝材室温拉伸性能和显微组织的影响。结果表明:经α+β两相区固溶+时效处理后,合金的显微组织由细小等轴初生α相、弥散针状次生α相和β基体组成。时效温度对合金强度和塑性的影响最为显著,固溶温度次之,时效时间的影响最小。根据试验结果对热处理工艺进行了优化,经(760~790)℃/1 h,WQ+(500~540)℃/4 h,AC处理后,Ti-1300F合金丝材获得强度和塑性的良好匹配。