Sudbrack Chantal K, Isheim Dieter, Noebe Ronald D, Jacobson Nathan S, Seidman David N
Department of Materials Science & Engineering, Northwestern University, 2220 Campus Drive, Evanston, IL 60208-3108, USA.
Microsc Microanal. 2004 Jun;10(3):355-65. doi: 10.1017/S1431927604040589.
The influence of W on the temporal evolution of gamma' precipitation toward equilibrium in a model Ni-Al-Cr alloy is investigated by three-dimensional atom-probe (3DAP) microscopy and transmission electron microscopy (TEM). We report on the alloys Ni-10 Al-8.5 Cr (at.%) and Ni-10 Al-8.5 Cr-2 W (at.%), which were aged isothermally in the gamma + gamma' two-phase field at 1073 K, for times ranging from 0.25 to 264 h. Spheroidal-shaped gamma' precipitates, 5-15 nm diameter, form during quenching from above the solvus temperature in both alloys at a high number density (approximately 1023 m-3). As gamma' precipitates grow with aging at 1073 K, a transition from spheroidal- to cuboidal-shaped precipitates is observed in both alloys. The elemental partitioning and spatially resolved concentration profiles across the gamma' precipitates are obtained as a function of aging time from three-dimensional atom-by-atom reconstructions. Proximity histogram concentration profiles (Hellman et al., 2000) of the quaternary alloy demonstrate that W concentration gradients exist in gamma' precipitates in the as-quenched and 0.25-h aging states, which disappear after 1 h of aging. The diffusion coefficient of W in gamma' is estimated to be 6.2 x 10-20 m2 s-1 at 1073 K. The W addition decreases the coarsening rate constant, and leads to stronger partitioning of Al to gamma' and Cr to gamma.
通过三维原子探针(3DAP)显微镜和透射电子显微镜(TEM)研究了W对模型Ni-Al-Cr合金中γ'析出相趋于平衡的时间演化的影响。我们报道了Ni-10Al-8.5Cr(原子百分比)和Ni-10Al-8.5Cr-2W(原子百分比)合金,它们在1073K的γ+γ'两相区等温时效,时效时间为0.25至264小时。在两种合金中,从固溶线温度以上淬火时会形成直径为5-15nm的球形γ'析出相,其数量密度很高(约1023 m-3)。随着γ'析出相在1073K时效过程中长大,在两种合金中都观察到从球形析出相到立方体形析出相的转变。通过三维逐个原子重建,获得了γ'析出相的元素分配和空间分辨浓度分布随时效时间的变化。四元合金的邻近直方图浓度分布(Hellman等人,2000)表明,在淬火态和0.25小时时效态的γ'析出相中存在W浓度梯度,时效1小时后消失。在1073K时,W在γ'中的扩散系数估计为6.2×10-20 m2 s-1。添加W降低了粗化速率常数,并导致Al更强烈地分配到γ'中,Cr更强烈地分配到γ中。