Ochmann Martin, Machala Libor, Mašláň Miroslav, Heger Vítězslav, Krátký Tomáš
Department of Experimental Physics, Faculty of Science, Palacký University, 17. listopadu 1192/12, 77900 Olomouc, Czech Republic.
Centre of Hydraulic Research, 78349 Lutín, Czech Republic.
Materials (Basel). 2024 Feb 12;17(4):857. doi: 10.3390/ma17040857.
The phase transition of austenitic stainless steel of commercial label CL20ES and zinc ferrite nanoparticles was studied in an oxidative atmosphere of dry air to develop a low-cost, effective technique for covering-layer fabrication. CL20ES powder and zinc ferrite powder were mechanically mixed. This mixture was studied in an atmosphere of dry air at different annealing temperatures from room temperature to 900 °C. The employed characterization techniques are X-ray powder diffraction, Mössbauer spectroscopy in the transmission geometry, and scanning electron microscopy with elemental mapping. The fabricated layers were also characterized by surface-specific techniques such as conversion electron Mössbauer spectroscopy and grazing incidence X-ray powder diffraction. The analyzed powder mixture shows resistance against oxidation in dry air and high temperatures. These results were employed to produce zinc ferrite covering layers on 3D-printed cylinders of CL20ES. The results show a predisposition of zinc ferrite to be recrystallized at temperatures above 350 °C without the production of corrosive substances on steel. The zinc ferrite layers were analyzed by an ultrasonic hardness tester as well, which proved the hardness enhancement.
研究了商业标号为CL20ES的奥氏体不锈钢与铁酸锌纳米颗粒在干燥空气氧化气氛中的相变,以开发一种低成本、有效的覆盖层制造技术。将CL20ES粉末和铁酸锌粉末进行机械混合。在从室温到900℃的不同退火温度下,在干燥空气气氛中对该混合物进行了研究。所采用的表征技术有X射线粉末衍射、透射几何中的穆斯堡尔光谱以及带有元素映射的扫描电子显微镜。所制备的层还通过表面特定技术进行表征,如转换电子穆斯堡尔光谱和掠入射X射线粉末衍射。分析的粉末混合物在干燥空气和高温下表现出抗氧化性。利用这些结果在CL20ES的3D打印圆柱体上制备了铁酸锌覆盖层。结果表明,铁酸锌在350℃以上的温度下易于重结晶,且不会在钢上产生腐蚀性物质。还通过超声硬度测试仪对铁酸锌层进行了分析,结果证明其硬度有所提高。