Development of the interlayer alloy using for TLP diffusion bonding of GH3230 superalloy based on the CALPHAD method

IF 6.1 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Sihan Zhang , Wenqing Qu , Junfei Teng , Yanlong Lyu , Haiyun Zhao , Hongshou Zhuang
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引用次数: 0

Abstract

The hot-end components of aero-engines and gas turbines not only require high-temperature alloys capable of withstanding extreme temperatures, but also demand welds with high-temperature-resistant properties. In this study, the CALPHAD method was employed, utilizing the thermodynamic theory of phase diagrams with Thermo-Calc software and the corresponding database, to design the interlayer composition for superalloy TLP diffusion connections. The optimization aimed to determine the interlayer material's solidus-liquidus and compound phase content, resulting in the selection of a new nickel-based interlayer material containing B as MPD, with Co and W as strengthening elements. Using GH3230 alloy as the research subject, TLP diffusion bonding experiments were conducted at a welding temperature of 1200 °C with a holding time of 4 h. The weld zone exhibited no defects, and the microstructure was identical to that of the GH3230 base metal, consisting entirely of a solid solution. High-temperature tensile tests revealed that fractures consistently occurred in the GH3230 base metal, indicating that the weld's strength significantly exceeded that of the base metal. The average tensile strength of GH3230 high-temperature alloy bar tensile simulated specimens is 899 MPa at room temperature and 213 MPa at high temperature. In addition, the 90° three-point bend test showed no cracking in the weld area, indicating adequate plasticity.
基于 CALPHAD 方法开发用于 GH3230 超合金 TLP 扩散接合的层间合金
航空发动机和燃气轮机的热端部件不仅需要能够承受极端温度的高温合金,还需要具有耐高温性能的焊缝。本研究采用 CALPHAD 方法,利用相图热力学理论、Thermo-Calc 软件和相应的数据库,设计超级合金 TLP 扩散连接的层间成分。优化的目的是确定夹层材料的固-液相和化合物相含量,最终选择了一种新的镍基夹层材料,该材料以 B 作为 MPD,以 Co 和 W 作为强化元素。以 GH3230 合金为研究对象,在焊接温度为 1200 ℃、保温时间为 4 小时的条件下进行了 TLP 扩散接合实验。焊接区无缺陷,显微结构与 GH3230 母材相同,完全由固溶体组成。高温拉伸测试表明,GH3230 母材持续发生断裂,这表明焊缝的强度大大超过了母材的强度。GH3230 高温合金棒材拉伸模拟试样的室温平均拉伸强度为 899 兆帕,高温平均拉伸强度为 213 兆帕。此外,90° 三点弯曲测试表明,焊接区域未出现裂纹,表明塑性充足。
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来源期刊
Materials Science and Engineering: A
Materials Science and Engineering: A 工程技术-材料科学:综合
CiteScore
11.50
自引率
15.60%
发文量
1811
审稿时长
31 days
期刊介绍: Materials Science and Engineering A provides an international medium for the publication of theoretical and experimental studies related to the load-bearing capacity of materials as influenced by their basic properties, processing history, microstructure and operating environment. Appropriate submissions to Materials Science and Engineering A should include scientific and/or engineering factors which affect the microstructure - strength relationships of materials and report the changes to mechanical behavior.
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