材料科学
微晶
结构精修
微观结构
衍射
合金
纹理(宇宙学)
气动冷喷涂
堆积
涂层
复合材料
叠加断层
结晶学
X射线晶体学
冶金
晶格常数
降水
晶格平面
晶体结构
粉末衍射
层错能
固溶体
变形(气象学)
Crystal(编程语言)
作者
Alessio Silvello,José-María Cabrera,I.G. Cano,Claudio Aguilar
标识
DOI:10.1017/s088571562510105x
摘要
Abstract CrFeCoNi high-entropy alloy (HEA) powder with an equimolar composition was produced via gas atomization and applied as a coating using the cold-spray technique. X-ray diffraction patterns were analyzed to characterize the microstructure of the raw HEA powder and cold-sprayed coatings using Rietveld refinement methods. The HEA powders exhibited a single-phase face-centered cubic crystal structure with a lattice parameter of 0.357349(1) nm, a low microstrain of 4.3(0.17) × 10 −4 , and a crystallite size of 225(8) nm, attributed to the rapid cooling during atomization. In contrast, the cold-sprayed coatings exhibited broadened diffraction peaks, with a reduced crystallite size of 67.9(1.2) nm and an increased microstrain of 2.2(0.23) × 10 −3 , showing crystallite size refinement and an increase in the density of crystalline defects due to severe plastic deformation during deposition. Additional microstructural analysis revealed texture in the {200} plane and intrinsic stacking fault probabilities increasing to 4.4(0.21) × 10 −3 . These findings highlight microstructural changes produced by the cold-spray process. This study provides valuable insights into optimizing cold-spray parameters and tailoring HEA properties for industrial applications.
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