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均匀化热处理对Ti-1023钛合金中铁微观偏析的影响

Effects of Homogenization Heat Treatment on the Fe Micro-Segregation in Ti-1023 Titanium Alloy.

作者信息

Tong Jian-Bo, Zhang Chao-Jie, Chen Jun-Shu, Yan Meng-Qi, Xu Rui-Lin, Huang Li-Jun

机构信息

Aviation Key Laboratory of Science and Technology on Advanced Titanium Alloys, AECC Beijing Institute of Aeronautical Materials, Beijing 100095, China.

School of Metallurgical Engineering, Anhui University of Technology, Ma'anshan 243002, China.

出版信息

Materials (Basel). 2023 Jul 9;16(14):4911. doi: 10.3390/ma16144911.

Abstract

The segregation of the Fe element in Ti-10V-2Fe-3Al titanium alloy (Ti-1023) can lead to the generation of beta flecks, which seriously affects the performance of Ti-1023 products. During the heat treatment (HT) process at a high temperature, the Fe element in Ti-1023 ingots will migrate, making its distribution more uniform and reducing the segregation index. In this paper, the control of Fe micro-segregation in Ti-1023 ingots by homogenization HT was investigated. Firstly, dissection sampling and SEM-EDS analysis methods were used to study the distribution pattern of the Fe element in the equiaxed grains in the core of Ti-1023 ingots. It was found that the Fe content in the grain gradually increased along with the radial direction from the core to the grain boundary. Then, the homogenization HT experiments and numerical simulations of Ti-1023 at different HT temperatures from 1050 °C to 1200 °C were carried out. The results showed that the uniformity of Fe element distribution within grain can be significantly improved by the homogenization HT. With increasing HT temperature, Fe atoms migration ability increases, and the uniformity of Fe element distribution improves. Homogenization HT at 1150 °C and 1200 °C for 12 h can effectively reduce the degree of Fe element segregation.

摘要

Fe元素在Ti-10V-2Fe-3Al钛合金(Ti-1023)中的偏析会导致β斑的产生,这严重影响了Ti-1023产品的性能。在高温热处理(HT)过程中,Ti-1023铸锭中的Fe元素会发生迁移,使其分布更加均匀,偏析指数降低。本文研究了通过均匀化热处理控制Ti-1023铸锭中Fe微偏析的方法。首先,采用解剖取样和SEM-EDS分析方法研究了Ti-1023铸锭芯部等轴晶粒中Fe元素的分布规律。发现晶内Fe含量从芯部到晶界沿径向逐渐增加。然后,对Ti-1023在1050℃至1200℃不同热处理温度下进行了均匀化热处理实验和数值模拟。结果表明,均匀化热处理可显著提高晶内Fe元素分布的均匀性。随着热处理温度的升高,Fe原子迁移能力增强,Fe元素分布的均匀性提高。在1150℃和1200℃下进行12小时的均匀化热处理可有效降低Fe元素的偏析程度。

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