Barella Silvia, Ciuffini Andrea Francesco, Gruttadauria Andrea, Mapelli Carlo, Mombelli Davide, Longaretti Eugenio
Dipartimento di Meccanica, Politecnico di Milano, via La Masa 1, Milano 20156, Italy.
F.G.S., Via Garzoneri 11, Treviglio (BG) 24047, Italy.
Materials (Basel). 2019 Aug 12;12(16):2572. doi: 10.3390/ma12162572.
The low-density steels represent a topic of great interest within the scientific world because of the great demand from the steel market of increasingly lighter materials, also featured by an optimal mix of the mechanical properties. In this work, the corrosion and hot oxidation resistance of a Fe-15%Mn-9.5%Al-6.5%Ni-1%Cr-0.43%C were analyzed and related to the microstructural features. The material behavior was analyzed both in the as-cast and in the heat-treated state. For the corrosion test, the experimental plan was fulfilled using four different concentrations of HCl and four temperatures. In the case of hot oxidation resistance, the exposure time and the temperature effects were evaluated. The corrosion resistance in HCl was comparable to the stainless steel, and the iso-corrosion curves showed excellent resistance of the 1300 °C solution-treated material, especially at low temperatures, but it is also good at high temperatures due to the hot oxidation.
低密度钢由于钢铁市场对日益轻量化材料的巨大需求而成为科学界极为关注的一个课题,这些材料还具有机械性能的最佳组合。在这项工作中,分析了Fe-15%Mn-9.5%Al-6.5%Ni-1%Cr-0.43%C钢的耐腐蚀和抗热氧化性,并将其与微观结构特征相关联。对铸态和热处理状态下的材料性能进行了分析。对于腐蚀试验,采用四种不同浓度的盐酸和四个温度完成了实验方案。在抗热氧化性方面,评估了暴露时间和温度的影响。该钢在盐酸中的耐腐蚀性与不锈钢相当,等腐蚀曲线表明1300℃固溶处理后的材料具有优异的耐腐蚀性,尤其是在低温下,但由于热氧化作用,在高温下也具有良好的耐腐蚀性。