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固溶温度对GH4169高温合金微观结构与 力学性能影响
Effects of Solution Treatment Temperature on the Microstructure and Mechanical Properties of GH4169 Superalloy
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- DOI:
- 作者:
- 刘 伟1,李 科1,赵燕茹1,朱 静1,孟庆坤2,马瑞亭1
LIU Wei1, LI Ke1, ZHAO Yanru1, ZHU Jing1, MENG Qingkun2, MA Ruiting1
- 作者单位:
- 1. 西部超导材料科技股份有限公司,陕西西安710018;2.中国矿业大学,江苏徐州221116
1. Western Superconducting Technologies Co., Ltd., Xi'an 710018, China; 2. China University of Mining and Technology, Xuzhou 221116, China
- 关键词:
- 高温合金;固溶温度;力学性能;析出相;固溶时效
superalloy; solution temperature; mechanical properties; precipitated phase; solid solution and aging
- 摘要:
- GH4169是一种广泛应用于航空、核电等重要领域的高温合金,除控制锻造工艺外,通过热处理调整合金微
观结构和组织稳定性也是提高其力学性能的重要方式。 利用光镜(OM)、扫描电镜(SEM)、透射电镜(TEM)及拉伸试验等
方法,研究了GH4169合金经960~1020℃固溶处理后时效的显微组织演变及室温、650℃拉伸性能的变化规律。 结果
表明,固溶温度显著影响了合金微观结构,当固溶温度升高到1000℃后,合金中δ相大量溶解,导致基体晶粒尺寸迅
速长大;由于基体中溶质元素的增加,在随后的时效处理中γ′和γ″析出量增加。 晶粒尺寸增加对力学性能的降低作用
超过了增强相含量增加带来的强化作用,相对于960和980℃固溶后时效的试样,1000和1020℃固溶时效的试样在
室温和650℃的屈服强度都更低。GH4169 is a superalloy widely used in important fields, such as aviation and nuclear power. In addition to controlling the forging process, modifying the microstructure and enhancing the stability of the alloy via heat treatment is also an important way to improve its mechanical properties. Optical microscopy (OM), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and tensile tests were used to study the changes in the microstructure and tensile properties of the GH4169 alloy after solution treatment at 960~1 020 ℃ followed by aging at room temperature and 650 ℃. The results show that the solution temperature significantly affects the microstructure of the alloy. When the solution temperature increases from 960 to 1 000 ℃, a large amount of the δ phase in the alloy dissolves, resulting in rapid growth of the matrix grain size. Owing to the increase in solute elements in the matrix, the amounts of γ′ and γ″ precipitates increase during the subsequent aging treatment. The reduction effect resulting from the increase in the grain size on the mechanical properties exceeds the strengthening effect caused by the increase in the number of strengthening phases. Compared with the alloys aged after solution treatment at 960 and 980 ℃, those subjected to solution treatment at 1 000 and 1 020 ℃ prior to aging present reduced yield strengths at both room temperature and 650 ℃.