Influence of Microstructures on Tensile Properties at 400℃ of TC4 Titanium Alloy

The effects of primary α phase volume fraction on the tensile properties at 400℃ of TC4 titanium alloy was studied by different solution temperature(Tβ-(10~80)℃). The effects of the thick of secondary α phase on the tensile properties at 400℃ of TC4 titanium alloy was studied by different cooling sp...

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Published inMATEC Web of Conferences Vol. 321; p. 11048
Main Authors Yong, Ren, Nan, Yang, Jinwen, Lei, Shaoqiang, Li, Yuxuan, Du
Format Journal Article Conference Proceeding
LanguageEnglish
Published Les Ulis EDP Sciences 2020
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Abstract The effects of primary α phase volume fraction on the tensile properties at 400℃ of TC4 titanium alloy was studied by different solution temperature(Tβ-(10~80)℃). The effects of the thick of secondary α phase on the tensile properties at 400℃ of TC4 titanium alloy was studied by different cooling speed after solution treatment (water quench, air cooling, furnace cooling). The results show that with the decrease of primary α phase, the tensile and yield strength increase up, but the ductility has a little change. The thick of secondary α phase increases with the deceases of cooling speed after solution treatment, highest tensile and yield strength by water quench, the tensile strength of air cooling and furnace cooling were basically the same, but the yield strength of furnace cooling was 40MPa lower than air cooling. Therefore, the influence of the primary α phase volume fraction on the tensile strength at 400℃ was particularly obvious, we can control solution treatment and cooling way in combination with different requirements.
AbstractList The effects of primary α phase volume fraction on the tensile properties at 400℃ of TC4 titanium alloy was studied by different solution temperature(Tβ-(10~80)℃). The effects of the thick of secondary α phase on the tensile properties at 400℃ of TC4 titanium alloy was studied by different cooling speed after solution treatment (water quench, air cooling, furnace cooling). The results show that with the decrease of primary α phase, the tensile and yield strength increase up, but the ductility has a little change. The thick of secondary α phase increases with the deceases of cooling speed after solution treatment, highest tensile and yield strength by water quench, the tensile strength of air cooling and furnace cooling were basically the same, but the yield strength of furnace cooling was 40MPa lower than air cooling. Therefore, the influence of the primary α phase volume fraction on the tensile strength at 400℃ was particularly obvious, we can control solution treatment and cooling way in combination with different requirements.
Author Yong, Ren
Nan, Yang
Yuxuan, Du
Shaoqiang, Li
Jinwen, Lei
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10.1016/0025-5416(88)90238-8
10.1007/BF02645919
10.1016/0921-5093(96)10233-1
10.1016/S0921-5093(01)01531-3
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Snippet The effects of primary α phase volume fraction on the tensile properties at 400℃ of TC4 titanium alloy was studied by different solution...
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StartPage 11048
SubjectTerms Air cooling
Cooling
Cooling rate
microstructure
Phase volume fraction
Solution heat treatment
solution temperature
tc4 titanium
Tensile properties
tensile properties at 400
Tensile strength
Titanium alloys
Titanium base alloys
Yield strength
Yield stress
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Title Influence of Microstructures on Tensile Properties at 400℃ of TC4 Titanium Alloy
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