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Effect of Casting Die Cooling on Solidification Process and Microstructure of Hypereutectic Al-Si Alloy

机译:铸模冷却对过共晶Al-Si合金凝固过程和组织的影响

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The work is a continuation of research concerning the influence of intensive cooling of permanent mold in order to increase the casting efficiency of aluminium alloys using the multipoint water mist cooling system. The paper presents results of investigation of crystallization process and microstructure of synthetic hypereutectic alloys: AlSi15 and AlSi19. Casts were made in permanent mold cooled with water mist stream. The study was conducted for unmodified silumins on the research station allowing the cooling of the special permanent probe using a program of computer control. Furthermore the study used a thermal imaging camera to analyze the solidification process of hypereutectic silumins. The study demonstrated that the use of mold cooled with water mist stream allows in wide range the formation of the microstructure of hypereutectic silumins. It leads to higher homogeneity of microstructure and refinement of crystallizing phases and also it increases subsequently the mechanical properties of casting.
机译:该工作是有关永久性模具强化冷却的影响的继续研究,以提高使用多点水雾冷却系统的铝合金的铸造效率。本文介绍了合成过共晶合金AlSi15和AlSi19的结晶过程和显微组织的研究结果。铸件在用水雾冷却的永久模具中制成。该研究是在研究工作站上对未修饰的硅铝蛋白进行的,从而允许使用计算机控制程序冷却特殊的永久探针。此外,该研究还使用热像仪分析了过共晶硅铝蛋白的凝固过程。研究表明,使用水雾流冷却的模具可以在很大范围内形成过共晶硅铝蛋白的微观结构。它导致微观结构的更高均质性和结晶相的细化,并且随后提高了铸造的机械性能。

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