Makarenko Konstantin, Dubinin Oleg, Shishkovsky Igor
Center for Design, Manufacturing and Materials, Skolkovo Institute of Science and Technology, Bolshoy Boulevard 30, build. 1, 121205 Moscow, Russia.
Materials (Basel). 2020 Dec 11;13(24):5665. doi: 10.3390/ma13245665.
The paper is devoted to the direct energy deposition (DED) of functionally graded materials (FGMs) created from stainless steel and aluminum bronze with 10% content of Al and 1% of Fe. The results of the microstructure analysis using scanning electronic microscopy (SEM) demonstrate the existence of a dendritic structure in the specimens. The crystallization rate of the gradient binary Cu-Fe system structures was investigated and calculated using the model of a fast-moving concentrated source with an ellipsoid crystallization front. The width of the secondary elements of the dendrites in the crystallized slab was numerically estimated as 0.2 nm at the center point of the circle heat spot, and the two types of dendrites were predicted in the specimen: the dendrites from 0.2 to approximately 50 nm and from approximately 0.1 to 0.3 μm in width of the secondary elements. The results were found to be in good accordance with the measured experimental values of the dendritic structure geometry parameters.
本文致力于由含10%铝和1%铁的不锈钢和铝青铜制成的功能梯度材料(FGM)的直接能量沉积(DED)。使用扫描电子显微镜(SEM)进行微观结构分析的结果表明,试样中存在树枝状结构。利用具有椭圆形结晶前沿的快速移动集中源模型,对梯度二元铜 - 铁系统结构的结晶速率进行了研究和计算。在圆形热斑中心点处,数值估计结晶板中树枝状二次元素的宽度为0.2纳米,并且预测试样中存在两种类型的树枝状结构:二次元素宽度为0.2至约50纳米以及约0.1至0.3微米。结果发现与树枝状结构几何参数的实测实验值高度吻合。