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Surface quality and microstructure of Al-Mg alloy strips fabricated by vertical-type high-speed twin-roll casting

机译:立式高速双辊铸造Al-Mg合金带材的表面质量和组织

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Al-Mg alloy strips were fabricated by the vertical-type high-speed twin-roll casting. Periodic patterns on the strip surface were observed in the casting direction consisting of the shiny region and un-shiny region with cracks. The un-shiny region and cracks remain even after successive cold rolling. Therefore, formation of the periodic patterns during casting should be suppressed. In this study, the formation mechanism of the periodic patterns of the JIS-AC7A strips was examined by microstructural observation and compositional analysis. The cross-sectional observation in the un-shiny region revealed the inverse segregation of Mg and Fe from the mid-thickness area of the strip toward the surface along the grain boundaries. It is considered that the residual liquid is squeezed out from the mid-thickness area of the strip toward the surface through the grain boundaries, and results in the formation of the un-shiny region. Temperature measurement was performed at the gap formed between the roll surface and the nozzle tip by using thermocouples. The strips were also fabricated by using the nozzles with various tip shapes in order to change the contact conditions between the melt and roll surface. The oscillation of the molten metal meniscus in the gap between the roll surface and the nozzle tip is considered to be one of the possible reasons of the formation of the periodic patterns on the strip surface.
机译:Al-Mg合金带材是通过立式高速双辊铸造法制造的。在铸造方向上观察到带状表面上的周期性图案,该图案由发亮区域和具有裂纹的非发亮区域组成。即使连续进行冷轧后,仍会保留不发光的区域和裂纹。因此,应抑制在铸造期间形成周期性图案。在这项研究中,通过微观结构观察和成分分析来检查JIS-AC7A条的周期性图案的形成机理。在无光泽区域的横截面观察表明,Mg和Fe从带材的中厚度区域沿晶界向表面反向偏析。认为残留的液体通过晶粒边界从带材的中间厚度区域朝向表面被挤出,并且导致形成不发光的区域。通过使用热电偶在辊表面和喷嘴尖端之间形成的间隙处进行温度测量。还通过使用具有各种尖端形状的喷嘴来制造条带,以改变熔体和辊表面之间的接触条件。熔融金属弯液面在辊表面和喷嘴尖端之间的间隙中的振荡被认为是在带材表面上形成周期性图案的可能原因之一。

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