首页> 外文期刊>ISIJ international >Effect of Annealing Temperature on the Selective Oxidation and Reactive Wetting of a 0.1C-6Mn-2Si Advanced High Strength Steel During Continuous Galvanizing Heat Treatments
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Effect of Annealing Temperature on the Selective Oxidation and Reactive Wetting of a 0.1C-6Mn-2Si Advanced High Strength Steel During Continuous Galvanizing Heat Treatments

机译:退火温度对连续镀锌热处理过程中0.1C-6Mn-2Si高强度高强度钢的选择性氧化和反应润湿的影响

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The effects of peak annealing temperature and annealing time on the selective oxidation and reactive wetting of a prototype medium-Mn Fe-0.1C-6Mn-2Si third generation advanced high strength steel were investigated. Annealing heat treatments were carried out in a N_(2)-5 vol% H_(2) 243 K (?30°C) dew point process atmosphere at 963 K (690°C) and 1073 K (800°C) for 120 s and 600 s. TEM observations of the sample cross-sections revealed internal oxidation of the subsurface grains and grain boundaries. EELS results showed that the internal oxide network had a multi-layered structure with SiO_(2) at the oxide core and MnSiO_(3) as the surrounding shell; however, MnO was the only species detected at the surface of all samples. The effect of annealing temperature on the surface structure development and its impact on reactive wetting of the substrates annealed for 120 s at both peak annealing temperatures by a Zn-0.20 wt% Al (dissolved) galvanizing bath was also determined. In contrast to the 1073 K steel, the 963 K substrate showed superior reactive wetting, owing to the much thinner, finer and wider spacing of the MnO nodules on the pre-immersion surface. TEM+EELS analysis of the coated steels showed that infiltration of the bath alloy and partial reduction of MnO resulted in lift-off of the surface oxides and partial formation of Fe_(2)Al_(5)Zn_(X) interfacial layer, indicating that reactive wetting had occurred for the 963 K × 120 s substrate.
机译:研究了峰值退火温度和退火时间对原型中等Mn-Fe-0.1C-6Mn-2Si第三代高强度高强度钢的选择性氧化和反应润湿的影响。退火热处理是在N_(2)-5 vol%H_(2)243 K(?30°C)露点工艺气氛下于963 K(690°C)和1073 K(800°C)下进行的120秒和600秒。样品横截面的TEM观察表明,地下晶粒和晶界的内部氧化。 EELS结果表明,内部氧化物网络具有多层结构,其氧化物核心处为SiO_(2),周围壳为MnSiO_(3)。但是,MnO是所有样品表面唯一检测到的物质。还确定了退火温度对表面结构发展的影响及其对在两个峰值退火温度下经Zn-0.20 wt%Al(溶解)镀锌浴退火120 s的基材的反应性润湿的影响。与1073 K钢相反,由于预浸表面上MnO结核的间距更薄,更细和更宽,因此963 K基体表现出优异的反应性润湿性。涂层钢的TEM + EELS分析表明,熔池合金的渗透和MnO的部分还原导致表面氧化物的剥离和Fe_(2)Al_(5)Zn_(X)界面层的部分形成,表明963 K×120 s基材发生了反应性润湿。

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