新型镍基成分复杂合金的高温变形行为和同步微结构演化

Ananya Chattree , Amrit Pandey , Saurabh S. Nene , Jaiveer Singh
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摘要

在这项研究中,通过将 CALPHAD 方法与理论概念(混合焓、原子半径失配参数、价电子浓度 (VEC) 和成对σ元素 (PSFE))相结合,设计出了一种新型 Ni46.8Fe23Co10V7(Al,Si)6.6成分复杂合金(Ni-CCA)。理论分析和 CALPHAD 建模预测在室温下会形成单一的催化裂化相,并且在设计的 Ni-CCA 中不存在 TCP 相。随后,通过最新的 HEA 数据库从 Thermo-Calc 中获得的伪二元相图预测,在高温下,Ni-CCA 中会出现含有 Ni-Al-Si 的新型强化有序相。铸态 Ni-CCA 的微观结构特征显示,室温下形成了以γ-FCC 相为主的微观结构,其中含有少量 BCC 相,而高温压缩则显示了含有 L12 型沉淀的 Ni-Al-Si 的协同析出,以及变形过程中的动态恢复/再结晶事件,导致 800 °C 时屈服强度 (YS) 略有下降。此外,变形试样中项链状微观结构的形成证实了新型 Ni-CCA 中发生了动态再结晶 (DRX)。
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High-temperature deformation behavior and concurrent microstructural evolution in novel Ni-based compositionally complex alloy
In this study, a novel Ni46.8Fe23Co10V7(Al, Si)6.6 compositionally complex alloy (Ni-CCA) has been designed by merging the CALPHAD approach with the theoretical concepts (enthalpy of mixing, atomic radius mismatch parameter, valence electron concentration (VEC), and pair sigma forming elements (PSFE)). The theoretical analysis and the CALPHAD modeling predict the formation of a single FCC phase at room temperature along with the absence of TCP phases in the designed Ni-CCA. Subsequently, the pseudo-binary phase diagram obtained from Thermo-Calc through the latest HEA database predicts the presence of newer strengthening ordered phases containing Ni-Al-Si at elevated temperatures in Ni-CCA. Microstructural characterization of as-cast Ni-CCA displayed the formation of γ-FCC phase dominated microstructure containing a minor fraction of BCC phase at room temperature whereas high-temperature compression depicted synergistic precipitation of Ni-Al-Si containing L12 type precipitate and dynamic recovery/recrystallization events during deformation leading to a marginal drop in yield strength (YS) at 800 °C. Moreover, the formation of necklace microstructure in a deformed specimen confirms the occurrence of dynamic recrystallization (DRX) in novel Ni-CCA.
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