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Effects of primary phase morphology on mechanical properties of Al-Si-Mg-Fe alloy in semi-solid slurry casting process

机译:初生相形态对半固态浆料铸造Al-Si-Mg-Fe合金力学性能的影响

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The gas induced semi-solid (GISS) process was developed to create semi-solid slurry with fine and uniform globular structure. The combination of local rapid heat extraction and vigorous agitation by the injection of fine inert gas bubbles through a graphite diffuser in molten metal held at a temperature above its liquidus temperature changes the morphology of primary α(Al) from coarse dendritic to rosette-like and finally to fine globular. The GISS process produced semi-solid slurry at low solid fractions and then formed the slurry by a squeeze casting process to produce casting parts. The effects of primary phase morphology on the mechanical properties of A1-Si-Mg-Fe alloy were investigated. The results show that the ultimate tensile strength and elongation are affected by the shape factor and particle size of the primary α(Al).
机译:开发了气体诱导半固体(GISS)工艺,以产生具有细小且均匀的球状结构的半固体浆料。局部快速吸热和剧烈搅拌相结合,通过在温度高于液相线温度的熔融金属中通过石墨扩散器注入细小的惰性气泡,将初级α(Al)的形态从粗枝状转变为玫瑰状和终于到了细球形。 GISS工艺生产出低固含量的半固态浆料,然后通过挤压铸造工艺形成浆料,从而生产出铸件。研究了初生相形态对Al-Si-Mg-Fe合金力学性能的影响。结果表明,极限拉伸强度和伸长率受初级α(Al)的形状因子和粒径的影响。

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