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Data related to the growth of σ-phase precipitates in CrMnFeCoNi high-entropy alloys: Temporal evolutions of precipitate dimensions and concentration profiles at interfaces

机译:与CRMNFeconi高熵合金中σ相沉淀有关的数据:界面处的沉淀尺寸和浓度谱的时间演变

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摘要

A data compilation related to the growth kinetics of a topologically closed-packed (TCP) phase is reported. A high-entropy alloy (HEA) with a composition of Cr26Mn20Fe20Co20Ni14 in at.%, a mean grain size of 50 µm and initially single-phase face-centered cubic (FCC) was annealed at temperatures ranging from 600 °C to 1000 °C for times between 0.05 h and 1000 h. These heat treatments resulted in the formation of tetragonal σ precipitates that formed heterogeneously at different elements of the microstructure. The raw data of the present article include backscattered electron (BSE) micrographs where σ precipitates can be observed within grains, at grain boundaries, and triple points of the FCC matrix. From these images, the dimensions of the five largest precipitates observed within grains and those of the five largest allotriomorphs are provided for different times and temperatures in tables. As the σ precipitates are more enriched in Cr and depleted in Ni than the surrounding matrix, Cr-depleted (Ni-enriched) zones form in the FCC matrix next to the precipitates and widen at rates determined by diffusion. To document the evolution of the corresponding concentration profiles with time, electron dispersive X-ray spectroscopy (EDX) was used and the data are reported in Excel files. From these concentration profiles, the widths of the diffusion affected zones for Ni and Cr were systematically determined at different temperatures and times, apparent diffusion coefficients were deduced and all these data are provided in tables. The research data reported here have a fundamental value and document the growth kinetics of σ precipitates within grains and at grain boundaries. These data may help to establish a model able to predict how the precipitation kinetics of σ particles in FCC HEAs is affected by the alloy grain size and how the microstructure (volume fraction, size and distribution of σ precipitates) evolves with time and temperature. This approach may also be extended to austenitic steels and superalloys.
机译:报告了与拓扑封闭式填充(TCP)阶段的生长动力学相关的数据编译。具有Cr26mN20Fe20CO20NI14的高熵合金(Hea)在0.%,平均晶粒尺寸为50μm,最初单相面对立方(FCC)在温度范围为600℃至1000°C在0.05小时和1000小时之间。这些热处理导致形成四边形σ沉淀物,其在微结构的不同元件下形成异质。本文的原始数据包括反向散射电子(BSE)显微照片,其中σ沉淀物可以在晶粒中观察到FCC基质的晶粒边界和三重点。从这些图像中,在谷物中观察到的五种最大沉淀物的尺寸和五大同种异体植物的尺寸用于不同的时间和表格中的温度。由于Σ沉淀物在Cr中更富集并且在Ni中耗尽而不是周围基质,在沉淀物旁边的FCC基质中形成Cr耗尽(Ni-富集的)区并以通过扩散确定的速率而变宽。为了记录随时间的相应浓度分布的演变,使用电子分散X射线光谱(EDX),并在Excel文件中报告数据。从这些浓度分布,在不同的温度和时间下系统地确定扩散影响区域和CR的扩散区的宽度,推导出表观扩散系数,并且在表中提供所有这些数据。这里报道的研究数据具有基本价值,并记录了脑内和晶界内沉淀物的生长动力学。这些数据可以有助于建立一种能够预测FCC HEAS中σ颗粒的降水动力学的模型受合金粒度的影响以及微观结构(体积分数,σ沉淀物的体积分数,σ沉淀物的尺寸和分布)随时间和温度的影响。这种方法也可以扩展到奥氏体钢和高温合金。

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