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Microstructural Characteristic and Mechanical Behavior of Nodular Silicon Hypereutectic Al-Si Alloys

机译:球状硅过共晶Al-Si合金的显微组织和力学行为

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摘要

The microstructure and mechanical properties of Al-Si-Cu-Mg alloys containing 12 wt.% to 30 wt.% Si are discussed. The eutectic and primary silicon particles are nodulized by a designed modification practice followed by a solution heat treatment of 6 h to 8 h at 510°C to 520°C. Metallographic analysis was used to measure structural characteristics of the Si-rich structures. Spheroidization of silicon phase leads to an increase in tensile strength and ductility of alloys at room temperature and 300°C compared with commercial Al-Si alloy. Increasing Si concentration causes the ultimate tensile strength and elongation at room temperature to fall due to the appearance of coarse silicon particles, but the ultimate tensile strength at 300°C remains unchanged.
机译:讨论了含有12%(重量)至30%(重量)Si的Al-Si-Cu-Mg合金的显微组织和力学性能。通过设计的改性方法将低共熔和初级硅颗粒制成球状,然后在510°C至520°C的温度下进行6h至8h的固溶热处理。金相分析用于测量富硅结构的结构特征。与商业化的Al-Si合金相比,硅相的球化会导致合金在室温和300°C下的拉伸强度和延展性增加。 Si浓度的增加会由于出现粗大的硅颗粒而导致室温下的极限拉伸强度和伸长率降低,但是在300℃下的极限拉伸强度保持不变。

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