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Effects of iron-rich intermetallics and grain structure on semisolid tensile properties of Al-Cu 206 cast alloys near solidus temperature

机译:固相线温度附近富铁金属间化合物和晶粒结构对Al-Cu 206铸造合金半固态拉伸性能的影响

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摘要

The effects of iron-rich intermetallics and grain size on the semisolid tensile properties of Al-Cu 206 cast alloys near the solidus were evaluated in relation to the mush microstructure. Analyses of the stress–displacement curves showed that the damage expanded faster in the mush structure dominated by plate-like β-Fe compared to the mush structure dominated by Chinese script-like α-Fe. While there was no evidence of void formation on the β-Fe intermetallics, they blocked the interdendritic liquid channels and thus hindered liquid flow and feeding during semisolid deformation. In contrast, the interdendritic liquid flows more freely within the mush structure containing α-Fe. The tensile properties of the alloy containing α-Fe are generally higher than those containing β-Fe over the crucial liquid fraction range of ~0.6 to 2.8 pct, indicating that the latter alloy may be more susceptible to stress-related casting defects such as hot tearing. A comparison of the semisolid tensile properties of the alloy containing α-Fe with different grain sizes showed that the maximum stress and elongation of the alloy with finer grains were moderately higher for the liquid fractions of ~2.2 to 3.6 pct. The application of semisolid tensile properties for the evaluation of the hot tearing susceptibility of experimental alloys is discussed.
机译:相对于糊状显微组织,评估了富铁金属间化合物和晶粒尺寸对固相线附近Al-Cu 206铸造合金的半固态拉伸性能的影响。应力-位移曲线分析表明,与以汉字样α-Fe为主的糊状结构相比,在以板状β-Fe为主的糊状结构中损伤的扩展更快。尽管没有证据表明β-Fe金属间化合物形成空隙,但它们阻塞了树枝状晶间的液体通道,因此阻碍了半固态变形期间的液体流动和进料。相反,树突间液体在含有α-Fe的糊状结构内更自由地流动。在〜0.6至2.8 pct的关键液体分数范围内,含α-Fe的合金的拉伸性能通常高于含β-Fe的合金,这表明后者合金可能更容易受到应力相关的铸造缺陷(例如热)的影响。撕裂包含不同晶粒尺寸的含α-Fe的合金的半固态拉伸性能的比较显示,对于〜2.2至3.6 pct的液体份额,具有更细晶粒的合金的最大应力和伸长率适度更高。讨论了半固态拉伸性能在评估实验合金热撕裂敏感性中的应用。

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