Łyszkowski Radosław
Department of Advanced Materials and Technology, Military University of Technology, 2 Kaliskiego Str., 00-908 Warsaw, Poland.
Materials (Basel). 2015 Mar 30;8(4):1499-1512. doi: 10.3390/ma8041499.
The isothermal oxidation of Fe-28Al-5Cr (at%) intermetallic alloy microalloyed with Zr and B (<0.08 at%) in air atmosphere, in the temperature range of 1000 to 1200 °C, was studied. The investigation was carried out on the thin-walled (<1 mm) elements prepared by Laser Engineered Net Shaping (LENS) from alloy powder of a given composition. Characterization of the specimens, after the oxidation, was conducted using X-ray diffraction (XRD) and scanning electron microscopy (SEM, with back-scatter detector (BSE) and energy-dispersive X-ray spectroscopy (EDS) attachments). The investigation has shown, that the oxidized samples were covered with a thin, homogeneous α-Al₂O₃ oxide layers. The intensity of their growth indicates that the material lost its resistance to oxidation at 1200 °C. Structural analysis of the thin-walled components' has not shown intensification of the oxidation process at the joints of additive layers.
研究了在1000至1200°C温度范围内,在空气气氛中,添加Zr和B(<0.08 at%)微合金化的Fe-28Al-5Cr(原子百分比)金属间合金的等温氧化。研究是在由给定成分的合金粉末通过激光工程净成形(LENS)制备的薄壁(<1毫米)元件上进行的。氧化后,使用X射线衍射(XRD)和扫描电子显微镜(SEM,配备背散射探测器(BSE)和能量色散X射线光谱仪(EDS)附件)对试样进行表征。研究表明,氧化后的样品覆盖有一层薄的、均匀的α-Al₂O₃氧化层。其生长强度表明该材料在1200°C时失去了抗氧化性。薄壁部件的结构分析未显示在添加层的连接处氧化过程加剧。