[1]于腾,王磊,赵永庆,等.近β型高强钛合金Ti-26的β晶粒长大行为[J].郑州大学学报(工学版),2009,30(01):6-9.
 YU Teng,WANG Lei,ZHAO Yongqing,et al.β Grain Growth Behavior of Ti-26, A Near-β high-strength Titanium Alloy[J].Journal of Zhengzhou University (Engineering Science),2009,30(01):6-9.
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近β型高强钛合金Ti-26的β晶粒长大行为()
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《郑州大学学报(工学版)》[ISSN:1671-6833/CN:41-1339/T]

卷:
30卷
期数:
2009年01期
页码:
6-9
栏目:
出版日期:
1900-01-01

文章信息/Info

Title:
β Grain Growth Behavior of Ti-26, A Near-β high-strength Titanium Alloy
作者:
于腾王磊赵永庆等.
东北大学,材料各向异性与织构工程教育部重点实验室,辽宁,沈阳,110004, 西北有色金属研究院,陕西,西安,710016
Author(s):
YU Teng; WANG Lei; ZHAO Yongqing; etc
1.Northeastern University,Key Laboratory of Ministry of Education for Anisotropy and Texture of Materials,Shenyang 1 10004,China;2.Northwest Institute for Nonferrous Metal Research,Xi’an 710016,China
关键词:
Ti-26合金 晶粒长大 长大激活能 生长指数 固溶处理
Keywords:
Ti-26 alloy Grain growth Grow up to activate energy growth index Solution treatment
文献标志码:
A
摘要:
研究了Ti-26合金在不同固溶温度和固溶时间条件下β晶粒的长大规律,并且计算了该合金在775~880 ℃范围内,保温1 h时,β晶粒的长大激活能Qm和在820 ℃保温0.5~4 h的生长指数n,分析了影响β晶粒的长大激活能Qm和生长指数n的主要原因.研究表明,Ti-26合金在β相区不同温度保温时,β晶粒的长大过程受Ti元素控制;合金在820 ℃(Tβ+45 ℃)固溶时,晶粒生长指数n仅为0.24是由于固溶原子落后于β晶界的移动而形成拖曳造成的,然而当固溶温度超过820 ℃时,β晶界的移动可以摆脱溶质原子的束缚.
Abstract:
The growth law of Ti-26 alloy under different solution temperature and solution time conditions β was studied, and the growth activation energy Qm of the β grain and the growth index n of 775.880~1 h at 820 °C were calculated when the alloy was kept warm for 0 h in the range of 5~4 °C, and the main reasons affecting the growth activation energy Qm and growth index n of the β grain were analyzed. The results show that when Ti-26 alloy is insulated at different temperatures in the β phase, the growth process of the β grain is controlled by Ti. When the alloy is soluble at 820 °C (Tβ+45 °C), the grain growth index n is only 0.24, which is caused by the drag of the solid solution atoms lagging behind the movement of the β grain boundary, but when the solution temperature exceeds 820 °C, the movement of the β grain boundary can get rid of the shackles of solute atoms.
更新日期/Last Update: 1900-01-01