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Influence of the Oxidation-Reduction Process on the Surface and Sub-surface Microstructure of Intercritically Annealed CMnSi TRIP Steel

机译:氧化还原工艺对临界退火CMnSi TRIP钢表面和亚表面组织的影响

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The surface and sub-surface of an intercritically annealed Si-bearing CMnSi TRIP steel were investigated by high resolution transmission electron microscopy after pre-oxidation in a N_(2)+0.3 vol-% O_(2) atmosphere and subsequent reduction in a N_(2)+10 vol-% H_(2) atmosphere. After the initial pre-oxidation the surface consisted of areas covered with a thick Fe_(3)O_(4) oxide with an open porous structure and areas covered with a thin compact Fe_(3)O_(4) film connected to the steel by xMnO.SiO_(2) oxide bridges connecting the oxide film to the matrix. Both porous and compact oxide contained embedded grains of MnO. A grain boundary network of amorphous SiO_(2) was formed in the steel subsurface under the porous Fe_(3)O_(4) after the pre-oxidation treatment. No internal oxidation was observed below the compact Fe_(3)O_(4) layer. Whereas, the Fe_(3)O_(4) was fully reduced to metallic Fe after reduction annealing, the selective oxides MnO, c -xMnO.SiO_(2) (x>1) and a -xMnO.SiO_(2) (x<0.9) were unaffected by the reduction annealing. As no amorphous a -SiO_(2) or a -xMnO.SiO_(2) (x<0.9) film forming oxides were present at the surface of the Si-bearing TRIP steel after the pre-oxidation and reduction annealing, the treatment is believed to lead to an improved wettability of the surface by liquid Zn during hot dip galvanizing and Zn-coatings which are free of bare spot defects. Zn-coating adhesion problems may however arise from the formation of large pores at the Fe_(3)O_(4)/steel interface, which are still present after the oxide reduction.
机译:在N_(2)+0.3 vol%O_(2)气氛中预氧化并随后在N_ (2)+10体积%H_(2)气氛。初始预氧化后,表面由覆盖有开孔结构的厚Fe_(3)O_(4)氧化物的区域和覆盖有薄的致密Fe_(3)O_(4)薄膜的区域组成,该薄膜通过以下方式与钢连接xMnO.SiO_(2)氧化物桥将氧化物膜连接到基体。多孔氧化物和致密氧化物均包含嵌入的MnO晶粒。经过预氧化处理后,在多孔Fe_(3)O_(4)下的钢下表面形成了非晶态的SiO_(2)晶界网络。在致密的Fe_(3)O_(4)层下方未观察到内部氧化。而Fe_(3)O_(4)在还原退火后被完全还原为金属Fe,选择性氧化物MnO,c c -xMnO·SiO_(2)(x> 1)和α-xMnO。 SiO_(2)(x <0.9)不受还原退火的影响。在预氧化和预氧化之后,在含硅的TRIP钢的表面上不存在无定形的 a -SiO_(2)或 -xMnO.SiO_(2)(x <0.9)成膜氧化物。还原退火,据认为该处理导致在热浸镀锌和没有裸点缺陷的Zn涂层期间,液态Zn改善了表面的润湿性。但是,由于在Fe_(3)O_(4)/钢界面上形成大孔而导致镀锌层粘附问题,在氧化物还原后仍然存在大孔。

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