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Physical Properties of Iron-Oxide Scales on Si-Containing Steels at High Temperature

机译:高温下含硅钢上氧化铁皮的物理性能

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The mechanical properties of oxide scales at high-temperature were studied in order to improve the surface quality of commercial Si-containing high strength steels. Specific oxides of Fe_2O_3, Fe_3O_4, FeO and Fe_2SiO_4 were synthesized by powder metallurgy. The Vickers hardness, thermal expansion coefficient and thermal conductivity were measured at high-temperatures. A series of measurements confirmed that the physical properties of the synthesized oxides were different each other. From the Vickers hardness measurements, it was verified that the hardness of each synthesized oxide was identical with the naturally-formed iron oxide, as observed in the cross-section of oxide scales on steels. The influence of the Fe_2SiO_4 formed on Si-containing steels on the scale adhesion at high temperature and the surface property is discussed on the basis of the physical properties of the oxides.
机译:为了提高商品含硅高强度钢的表面质量,研究了高温下氧化皮的机械性能。通过粉末冶金法合成了Fe_2O_3,Fe_3O_4,FeO和Fe_2SiO_4的特定氧化物。在高温下测量维氏硬度,热膨胀系数和热导率。一系列测量证实合成氧化物的物理性质彼此不同。通过维氏硬度测量,可以证明每种合成氧化物的硬度与天然形成的氧化铁相同,如在钢上氧化皮的横截面中所见。基于氧化物的物理性质,讨论了在含硅钢上形成的Fe_2SiO_4对高温氧化皮附着力和表面性能的影响。

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