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Influence of Multi-Step Heating Methods on Properties of Al–Si Coating Boron Steel Sheet

机译:多步加热方法对Al-Si涂层钢板性能的影响

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In this study, the influence of the multi-step heating methods, such as two-step heating methods and three-step heating methods, on the properties of Al–Si coating boron steel sheet were evaluated by using the Gleeble-3500 thermal simulator. The evolution of microstructure and 3D surface topography of the Al–Si coating were also investigated. The results showed that the heating rates of 50 °C/s, named rapid heating, at the stage of 20–500 °C did not significantly influence the microstructure and 3D surface topography of the Al–Si coating in the two-step heating methods. The results also indicated that the volume fractions of Fe3Al2Si3 intermetallic compound, FeAl intermetallic compound and a-Fe phase in the Al–Si coating reduced by rapid heating at the stage of 700–930 °C in the three-step heating methods. The roughness of 3D surface topography of the Al–Si coating increased by rapid heating at the stage of 700–930 °C. Rapid heating at the stage of 700–930 °C had little influence on the porosity of the Al–Si coating. The results provided a theoretical basis for the popularization and application of rapid heating in the Al–Si coating boron steel sheet.
机译:在该研究中,通过使用GHELEBLE-3500热模拟器评估了在Al-Si涂布硼钢板的性质上进行多步加热方法的影响。还研究了Al-Si涂层的微观结构和3D表面形貌的演变。结果表明,在20-500°C的阶段,在20-500°C的阶段,50℃/ s的加热速率在20-500°C的阶段没有显着影响两步加热方法中Al-Si涂层的微观结构和3D表面形貌。结果还表明,在三步加热方法中,通过在700-930℃的阶段的快速加热下,Fe3Al 2 Si 3金属间化合物,Feal金属间化合物和A-Fe相的体积分数减少。 Al-Si涂层的3D表面形貌的粗糙度通过700-930℃的阶段的快速加热而增加。 700-930°C阶段的快速加热对Al-Si涂层的孔隙率没有影响。结果为Al-Si涂层硼钢板中的快速加热的推广和应用提供了理论依据。

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