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材料研究学报  2016, Vol. 30 Issue (4): 299-306    DOI: 10.11901/1005.3093.2015.353
  本期目录 | 过刊浏览 |
Fe对Ti-6Al-4V ELI合金力学性能的影响
梁恩泉1, 黄森森2,3, 马英杰3(), 张韧1, 雷家峰3, 柳洋1
1. 中国商用飞机有限责任公司 上海飞机设计研究院 上海 200232
2. 东北大学材料科学与工程学院 沈阳 110819
3. 中国科学院金属研究所 沈阳 110016
The Influence of Fe on the Mechanical Properties of Ti-6Al-4V ELI Alloy
LIANG Enquan1, HUANG Sensen2,3, MA Yingjie3,*(), ZHANG Ren1, LEI Jiafeng3, LIU Yang1
1. Shanghai Aircraft Design and Research Institute, Commercial Aircraft Corporation of China, Ltd, Shanghai 200232, China
2. Institute of Material and Metallurgy, Northeast University, Shenyang 110819, China
3. Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China
引用本文:

梁恩泉, 黄森森, 马英杰, 张韧, 雷家峰, 柳洋. Fe对Ti-6Al-4V ELI合金力学性能的影响[J]. 材料研究学报, 2016, 30(4): 299-306.
Enquan LIANG, Sensen HUANG, Yingjie MA, Ren ZHANG, Jiafeng LEI, Yang LIU. The Influence of Fe on the Mechanical Properties of Ti-6Al-4V ELI Alloy[J]. Chinese Journal of Materials Research, 2016, 30(4): 299-306.

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摘要: 

研究了Fe含量(0.03%-0.24%, 质量分数)对Ti-6Al-4V ELI (TC4 ELI) 合金力学性能的影响。利用EBSD对合金显微组织进行了表征, 对3种不同Fe含量的TC4 ELI的拉伸性能、断裂韧性和疲劳裂纹扩展速率(da/dN)、蠕变性能进行了对比分析。结果表明: 随着Fe含量增加, 在保持断裂韧性不变的同时, TC4 ELI合金的抗拉强度获得提高; 3种Fe含量的TC4 ELI合金在室温和200℃时的疲劳裂纹扩展速率相当, 而400℃条件下提高Fe含量将增大da/dN; 低于350℃时, 提高Fe含量能够增强合金的抗蠕变能力, 而高于350℃时, Fe的作用相反。分析可知: 微量Fe在β相内富集, 具有固溶强化作用, 从而提高了合金的抗拉强度; 高于350℃时, Fe具有加速扩散作用, 加速了基体内原子和界面的运动, 导致裂纹尖端塑性区内位错运动阻力降低, 从而提高了da/dN, 并且Fe加快了位错攀移的过程, 提高蠕变速率, 而低于350℃条件下, 扩散运动减弱, Fe主要起到强化作用。

关键词 金属材料Ti-6Al-4V ELI铁含量断裂韧性疲劳裂纹扩展蠕变    
Abstract

The effect of different Fe contents (0.03%, 0.17%, 0.24%) on the mechanical properties of Ti-6Al-4V ELI (TC4 ELI) alloy was studied. The microstructures were characterize by using EBSD, and the tensile properties, fracture toughness and fatigue crack growth rates (da/dN), creep properties of TC4 ELI with three Fe contents were compared and analyzed. The results showed that with the increase of Fe contents, Fe has no apparent influence on fracture toughness, however, tensile strength of the alloy was improved. The da/dN of the three TC4 ELI alloys were found to be almost identical at room temperature and 200℃, however da/dN was found to be marginally faster as Fe contents increased at 400℃. Within the range of 250~350℃, Fe improved creep resistance, while from 350℃ to 400℃, Fe had opposite effect. Fe atom was mainly enriched in β phase. And the tensile strength was improved with the increase of Fe contents due to the solid solution strengthening effect. Because of the high diffusing rates of Fe atom under the condition of 400℃, the movement of matrix atoms and interfaces were accelerated. So that, the resistance to dislocation motion in crack tip plastic zone was reduced, which led to higher da/dN. Under the condition of 350-400℃, Fe could improve the creep rate by speeding up the process of dislocation climbing, but the reinforcement is more important below 350℃ because of the weak diffusion.

Key wordsmetallic materials    Ti-6Al-4V ELI    Fe content    fracture toughness    fatigue crack growth    creep
收稿日期: 2015-06-24     
ZTFLH:  TG146  
作者简介: 本文联系人: 马英杰
Sample Impurity Alloying element
Fe C N H O Al V Ti
No1 0.03 <0.01 <0.01 <0.001 0.06 6.00 4.14 Bal.
No2 0.17 <0.01 <0.01 <0.001 0.06 6.00 4.15 Bal.
No3 0.24 <0.01 <0.01 <0.001 0.06 5.99 4.14 Bal.
表1  3种Fe含量TC4ELI合金的化学成分
图1  3种Fe含量TC4 ELI合金的显微组织
图2  No3合金样品的晶体取向分布图
图3  No3合金样品集束角度统计分布
图4  Al、V、Fe元素在α/β两相内的含量
图5  No3合金样品中Fe元素浓度线分布
Sample Al V Fe
α β α β α β
No1 6.12 6.27 3.00 6.08 0.06 0.16
No2 6.31 6.47 3.71 5.91 0.23 0.58
No3 6.38 5.92 3.13 8.03 0.16 1.09
表2  3种Fe含量TC4ELI合金α/β两相中不同元素含量
图6  3种TC4ELI合金在不同实验温度下的拉伸强度
Sample PQ/ kN Pmax/ kN Kq/ MPam1/2
No1 66.6 72.4 116.3
No2 65.8 71.3 115.1
No3 66.1 71.3 115.5
表3  3种Fe含量TC4ELI合金的断裂韧性
图6  3种TC4ELI合金在不同实验温度下的拉伸强度
图7  室温下3种TC4 ELI合金的疲劳裂纹扩展速率
图8  200℃下3种TC4 ELI合金的疲劳裂纹扩展速率
图9  400℃下3种Fe含量TC4 ELI合金的疲劳裂纹扩展速率
图10  3种Fe含量TC4 ELI合金在400℃下的裂纹扩展试样断口形貌
图11  两种Fe含量TC4ELI合金的蠕变曲线
图12  两种Fe含量TC4 ELI合金的蠕变应力指数
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