Vacuum superplastic deformation behavior of a near-alpha titanium alloy TA32

TA32 is a heat-resistant titanium alloy developed for superplastic forming in fabrication of near-space supersonic aerocraft. Clarification of superplastic deformation behavior is important to the optimization of forming parameters. Superplastic tensile test was conducted in vacuum to eliminate the...

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Main Authors: Cheng Chao, Zhang Weitang, Chen Zhiyong, Jin Liang, Wang Qingjiang
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2020/17/matecconf_ti2019_11018.pdf
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author Cheng Chao
Zhang Weitang
Chen Zhiyong
Jin Liang
Wang Qingjiang
author_facet Cheng Chao
Zhang Weitang
Chen Zhiyong
Jin Liang
Wang Qingjiang
author_sort Cheng Chao
collection DOAJ
description TA32 is a heat-resistant titanium alloy developed for superplastic forming in fabrication of near-space supersonic aerocraft. Clarification of superplastic deformation behavior is important to the optimization of forming parameters. Superplastic tensile test was conducted in vacuum to eliminate the effect of surface oxidation on experimental data, the test temperature and strain rate varied from 900oC to 960oC and 5.32×10-4 to 2.08×10-2s-1, respectively. It was observed that the size of equiaxed α grains exhibited a trend of coarsening with the increase of temperature and decrease of strain rate. Textures of deformed specimens exhibited random distribution with a decreased texture intensity compared with the as-received materials. The superplastic deformation mechanism of TA32 alloy was dominated by grain boundary sliding, which is accommodated by grain rotation and dynamic recrystallization.
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spelling doaj.art-0d9756d4688047058472efafea9244232022-12-21T20:03:15ZengEDP SciencesMATEC Web of Conferences2261-236X2020-01-013211101810.1051/matecconf/202032111018matecconf_ti2019_11018Vacuum superplastic deformation behavior of a near-alpha titanium alloy TA32Cheng ChaoZhang Weitang0Chen ZhiyongJin Liang1Wang QingjiangBeijing Electro-Mechanical Engineering InstituteBeijing Electro-Mechanical Engineering InstituteTA32 is a heat-resistant titanium alloy developed for superplastic forming in fabrication of near-space supersonic aerocraft. Clarification of superplastic deformation behavior is important to the optimization of forming parameters. Superplastic tensile test was conducted in vacuum to eliminate the effect of surface oxidation on experimental data, the test temperature and strain rate varied from 900oC to 960oC and 5.32×10-4 to 2.08×10-2s-1, respectively. It was observed that the size of equiaxed α grains exhibited a trend of coarsening with the increase of temperature and decrease of strain rate. Textures of deformed specimens exhibited random distribution with a decreased texture intensity compared with the as-received materials. The superplastic deformation mechanism of TA32 alloy was dominated by grain boundary sliding, which is accommodated by grain rotation and dynamic recrystallization.https://www.matec-conferences.org/articles/matecconf/pdf/2020/17/matecconf_ti2019_11018.pdf
spellingShingle Cheng Chao
Zhang Weitang
Chen Zhiyong
Jin Liang
Wang Qingjiang
Vacuum superplastic deformation behavior of a near-alpha titanium alloy TA32
MATEC Web of Conferences
title Vacuum superplastic deformation behavior of a near-alpha titanium alloy TA32
title_full Vacuum superplastic deformation behavior of a near-alpha titanium alloy TA32
title_fullStr Vacuum superplastic deformation behavior of a near-alpha titanium alloy TA32
title_full_unstemmed Vacuum superplastic deformation behavior of a near-alpha titanium alloy TA32
title_short Vacuum superplastic deformation behavior of a near-alpha titanium alloy TA32
title_sort vacuum superplastic deformation behavior of a near alpha titanium alloy ta32
url https://www.matec-conferences.org/articles/matecconf/pdf/2020/17/matecconf_ti2019_11018.pdf
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AT chenzhiyong vacuumsuperplasticdeformationbehaviorofanearalphatitaniumalloyta32
AT jinliang vacuumsuperplasticdeformationbehaviorofanearalphatitaniumalloyta32
AT wangqingjiang vacuumsuperplasticdeformationbehaviorofanearalphatitaniumalloyta32