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BT16钛合金渗氢后的针状物生成及演化过程
引用本文:王玉玲,吴国清,张振刚,黄正.BT16钛合金渗氢后的针状物生成及演化过程[J].航空学报,2009,30(10):1993-1997.
作者姓名:王玉玲  吴国清  张振刚  黄正
作者单位:北京航空航天大学,材料科学与工程学院,北京,100191
摘    要: 为了深入了解渗氢对BT16钛合金组织的影响,以获得具有优良冷镦性能的组织,采用光学显微(OM)分析和X射线衍射(XRD)分析等方法,研究了BT16钛合金渗氢后的微观组织和相组成。结果表明:BT16钛合金在780 ℃渗氢的过程中发生了α+β相到β相的转变,冷却后生成了魏氏体组织,α相在不同通氢时间的试样中均存在,且含量随通氢时间的增加而降低,渗氢过程中出现了氢化物相。说明渗氢导致BT16钛合金α+β相到β相的临界转变温度降到800 ℃以下,氢含量影响了氢化物的存在形式,随着氢含量的增加,TiH相最先出现,随后出现TiH1.5和TiH2相,这些钛氢化合物均为针状。

关 键 词:BT16合金  渗氢  微观组织  相组成  氢化物  

Formation and Evolution Process of Needle Hydride of BT16 Alloy After Hydrogenation
Wang Yuling,Wu Guoqing,Zhang Zhen gang,Huang Zheng.Formation and Evolution Process of Needle Hydride of BT16 Alloy After Hydrogenation[J].Acta Aeronautica et Astronautica Sinica,2009,30(10):1993-1997.
Authors:Wang Yuling  Wu Guoqing  Zhang Zhen gang  Huang Zheng
Institution:Shool of Materials Science and Engineering, Beijing University of Aeronautics and Astronautics
Abstract:To understand deeply the influence of hydrogenation on the BT16 alloy microstructure and obtain a microstructure with good properties of cold heading, optical microscopy (OM), and X ray diffractometry (XRD) are used to analyze the microstructure and phase composition of BT16 alloy after hydrogenation. The results show that the BT16 alloy phase transforms froms α+β to β at 780 ℃ in the process of hydrogenation, and Widmanstatten structure is generated after cooling. The α phase can be found in all samples with different hydrogenation time, and its content decreases as the hydrogenation time increases; hydrides appear in the process of hydrogenation. This suggests that because of hydrogenation, the transition temperature at which the BT16 alloy phase transforms from α+β to β drops below 800 ℃, and the hydrogen content influences the existing form of hydrides. As the hydrogen content increases, the TiH phase appears earlier, the TiH1.5 phase and TiH2 phase appear later, all of which are needle hydrides.
Keywords:BT16 alloy  hydrogenation  microstructure  phase composition  hydrides
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