Data for: Stacking fault energy, thermal expansion behavior, and elastic coefficients of a single-crystalline CrFeNi medium-entropy alloy
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In this compilation of data, we report the dilatation behavior, temperature dependence of elastic stiffness coefficients and the intrinsic stacking fault energy at room temperature of the single crystalline, equiatomic, and single-phase FCC CrFeNi medium-entropy alloy. All the data are either origin files (.opju) or excel files (.xlsx). Here is a short description of the files, which are numbered according to their order of appearance in the corresponding research article: Fig.2: Dilatation behavior between 100 and 673 K Fig.3: Temperature dependence of the elastic parameters between 100 and 673 K, including c11, c12, c44, C=(c11+c12+c44)/3, c’ = (c11-c12)/2, Anisotropy factor (A), Bulk modulus (B), shear modulus (G), Young modulus (E), Poisson's ratio (ν), normalized Cauchy pressure (c12-c44)/C and Pugh's index (B/G). Fig.4: Plots showing the separation distance between Shockley partials as a function of the angle between the dislocation line and the perfect Burgers vector. These data allow to determine the stacking fault energy of the equiatomic CrFeNi alloy.
本数据集汇编了单相面心立方(FCC)等原子比单晶CrFeNi中熵合金(medium-entropy alloy)的热膨胀行为、弹性刚度系数的温度依赖性,以及室温下的本征层错能相关数据。所有数据均为原始文件(.opju)或Excel文件(.xlsx)。下文为按对应研究论文中出现顺序编号的文件简要说明: 图2:100 K至673 K温度区间内的热膨胀行为 图3:100 K至673 K温度区间内弹性参数的温度依赖性,涵盖c11、c12、c44、平均弹性模量C=(c11+c12+c44)/3、弹性模量差c’=(c11-c12)/2、各向异性因子(A)、体积模量(B)、剪切模量(G)、杨氏模量(E)、泊松比(ν)、归一化柯西压力(c12-c44)/C以及巴格指数(B/G) 图4:展示肖克莱不全位错间距随位错线与全位错柏氏矢量夹角变化的曲线,该数据可用于确定等原子比CrFeNi合金的本征层错能。




