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镍钛钌体系的实验研究:液相面投影及1150℃等温截面

Experimental Investigations of Ni-Ti-Ru System: Liquidus Surface Projection and 1150 °C Isothermal Section.

作者信息

Ma Dupei, Li Zhi, Liu Yan, Zhao Manxiu, Hu Jingxian

机构信息

School of Materials Science and Engineering, Xiangtan University, Xiangtan 411105, China.

Key Laboratory of Materials Design and Preparation Technology of Hunan Province, Xiangtan University, Xiangtan 411105, China.

出版信息

Materials (Basel). 2023 Jul 27;16(15):5299. doi: 10.3390/ma16155299.

Abstract

Ruthenium addition inhibits the formation of the topologically close-packed phases in Ni-based superalloys and improves the solid solution strength of Ni-Ti shape memory alloys. Therefore, the Ni-Ti-Ru phase stability is a very valuable indicator of the effects of Ru in Ni-based superalloys and Ni-Ti shape memory alloys. In this study, the isothermal section at 1150 °C and liquidus surface projection of the Ni-Ti-Ru ternary system were determined experimentally using the equilibrated alloy method and diffusion couple method, respectively. Alloys were prepared through the arc-melting of Ni, Ti, and Ru (all 99.99% purity), and then vacuum encapsulation in quartz tubes, followed by annealing at 1150 °C for 36 to 1080 h depending on the alloy composition. Diffusion couples were fabricated by joining one single-phase block (τ1) with one two-phase block (NiTi + γ(Ni)), and the couples were annealed under vacuum at 1150 °C for 168 h. Reaction temperatures of as-cast alloys were determined by differential scanning calorimetry performed with heating and cooling rates of 10 °C/min. Scanning electron microscopy and X-ray diffraction were used to analyze the microstructure. Seven three-phase regions were found at the 1150 °C isothermal section. Seven primary solidification regions and five ternary invariant reactions were deduced in the liquidus surface projection. A new ternary compound τ1 was discovered in both the isothermal section at 1150 °C and liquidus surface projection. The results aid in thermodynamic modeling of the system and provide guidance for designing Ni-based superalloys and Ni-Ti shape memory alloys.

摘要

添加钌可抑制镍基高温合金中拓扑密排相的形成,并提高镍钛形状记忆合金的固溶强化效果。因此,镍钛钌相稳定性是钌在镍基高温合金和镍钛形状记忆合金中作用的一个非常有价值的指标。在本研究中,分别采用平衡合金法和扩散偶法实验测定了镍钛钌三元系1150℃等温截面和液相面投影。合金通过对镍、钛和钌(纯度均为99.99%)进行电弧熔炼制备,然后真空封装在石英管中,再根据合金成分在1150℃退火36至1080小时。扩散偶通过将一个单相块(τ1)与一个两相块(NiTi + γ(Ni))连接而成,并在1150℃真空退火168小时。通过以10℃/分钟的加热和冷却速率进行差示扫描量热法测定铸态合金的反应温度。使用扫描电子显微镜和X射线衍射分析微观结构。在1150℃等温截面发现了七个三相区。在液相面投影中推导得出七个初生凝固区和五个三元不变反应。在1150℃等温截面和液相面投影中均发现了一种新的三元化合物τ1。这些结果有助于该体系的热力学建模,并为设计镍基高温合金和镍钛形状记忆合金提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49cc/10420209/9a7bd6d4b2e7/materials-16-05299-g001.jpg

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