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关于晶粒尺寸和温度对单相面心立方CrFeNi中熵合金强度影响的数据汇编。

Data compilation regarding the effects of grain size and temperature on the strength of the single-phase FCC CrFeNi medium-entropy alloy.

作者信息

Schneider Mike, Laplanche Guillaume

机构信息

Institute for Materials, Ruhr-University Bochum, Universitätsstr. 150, 44801 Bochum, Germany.

出版信息

Data Brief. 2021 Jan 5;34:106712. doi: 10.1016/j.dib.2020.106712. eCollection 2021 Feb.

Abstract

In the present article, we present a data compilation reflecting recrystallized microstructures and the corresponding mechanical properties of an equiatomic, single-phase face-centered cubic (FCC) CrFeNi medium-entropy alloy (MEA). For the analysis, interpretation, and discussion of the data, the reader can refer to the original research article entitled "Effects of temperature on mechanical properties and deformation mechanisms of the equiatomic CrFeNi medium-entropy alloy", see Ref. (, Acta Mater. 204, 2020). The data related to recrystallized microstructures comprise raw backscatter electron (BSE) micrographs (tif-files) obtained using a scanning electron microscope (SEM) for six grain sizes in the range [10-160 µm], optical micrographs of the alloy with the largest grain size ( = 327 µm), pdf-reports and tables presenting the corresponding grain-size distributions (, accounting for grain boundaries only) and crystallite-size distributions (, which accounts for both grain and annealing twin boundaries), the annealing twin thicknesses (), the average number of annealing twin boundaries per grain (), and the average Taylor factor () of each recrystallized microstructure. These are benchmark datasets that may serve to develop new algorithms for the automated evaluation of microstructural parameters. Such algorithms would help to speed up the analyses of microstructures and improve their reliability. Furthermore, several groups pointed out that in addition to the mean grain size, other microstructural parameters such as the grain size distribution ( et al., Model. Simul. Mater. Sc. 16, 2008) and the average number of twins per grain ( et al., Int. J. Plasticity, 124, 2020) may affect some material properties (e.g. Hall-Petch strengthening). Therefore, an effort was made here to determine and report almost all the microstructural parameters describing recrystallized microstructures of FCC alloys. The mechanical-properties data are provided as excel-sheets in which the raw stress-strain curves can be found. Compression tests for alloys with different grain sizes were performed at room temperature. Additional compression tests and tensile tests for the grain size  = 160 µm were performed at temperatures between 77 K and 873 K. Characteristic mechanical properties, such as yield stresses at 0.2% plastic strain ( ) and Hall-Petch parameters ( and ) are given for all temperatures in the tables below. Moreover, the Hall-Petch parameters as well as the mechanical data reported in the present study could be used for data mining and implemented in programs used for alloy design.

摘要

在本文中,我们展示了一组数据汇编,其反映了一种等原子单相面心立方(FCC)CrFeNi中熵合金(MEA)的再结晶微观结构及相应的力学性能。关于这些数据的分析、解释和讨论,读者可参考题为《温度对等原子CrFeNi中熵合金力学性能及变形机制的影响》的原始研究文章,见参考文献(,《Acta Mater.》204,2020)。与再结晶微观结构相关的数据包括使用扫描电子显微镜(SEM)获得的六种晶粒尺寸(范围为[10 - 160 µm])的原始背散射电子(BSE)显微照片(tif文件)、最大晶粒尺寸( = 327 µm)合金的光学显微照片、呈现相应晶粒尺寸分布(仅考虑晶界)和微晶尺寸分布(同时考虑晶粒和退火孪晶界)的pdf报告和表格、退火孪晶厚度()、每个晶粒的平均退火孪晶界数量()以及每个再结晶微观结构的平均泰勒因子()。这些是基准数据集,可用于开发用于自动评估微观结构参数的新算法。此类算法将有助于加快微观结构分析并提高其可靠性。此外,多个研究团队指出,除了平均晶粒尺寸外,其他微观结构参数,如晶粒尺寸分布(等人,《Model. Simul. Mater. Sc.》16,2008)和每个晶粒的平均孪晶数量(等人,《Int. J. Plasticity》,124,2020)可能会影响某些材料性能(例如霍尔 - 佩奇强化)。因此,本文努力确定并报告了几乎所有描述FCC合金再结晶微观结构的微观结构参数。力学性能数据以电子表格形式提供,其中可找到原始应力 - 应变曲线。在室温下对不同晶粒尺寸的合金进行了压缩试验。对晶粒尺寸 = 160 µm的合金在77 K至873 K的温度范围内进行了额外的压缩试验和拉伸试验。下表给出了所有温度下的特征力学性能,如0.2%塑性应变时的屈服应力()和霍尔 - 佩奇参数(和)。此外,本文报告的霍尔 - 佩奇参数以及力学数据可用于数据挖掘,并应用于合金设计程序中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab12/7807211/dce753773d88/gr1.jpg

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