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Metallurgical Parameters Controlling the Eutectic Silicon Charateristics in Be-Treated Al-Si-Mg Alloys

机译:控制铍处理的铝硅镁合金中共晶硅特性的冶金参数

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摘要

The present work was carried out on Al-7%Si-0.4%Mg-X alloy (where X = Mg, Fe, Sr or Be), where the effect of solidification rate on the eutectic silicon characteristics was investigated. Two solidification rates corresponding to dendrite arm spacings (DAS) of 24 and 65 μm were employed. Samples with 24 μm DAS were solution heat-treated at 540 °C for 5 and 12 h prior to quenching in warm water at 65 °C. Eutectic Si particle charateristics were measured using an image analyzer. The results show that the addition of 0.05% Be leads to partial modification of the Si particles. Full modification was only obtained when Sr was added in an amount of 150–200 ppm, depending on the applied solidification rate. Increasing the amount of Mg to 0.8% in Sr-modified alloys leads to a reduction in the effectiveness of Sr as the main modifier. Similar observations were made when the Fe content was increased in Be-treated alloys due to the Be-Fe interaction. Over-modification results in the precipitation of hard Sr-rich particles, mainly Al4SrSi2, whereas overheating causes incipient melting of the Al-Cu eutectic and hence the surrounding matrix. Both factors lead to a deterioration in the alloy mechanical properties. Furthermore, the presence of long, acicular Si particles accelerates the occurrence of fracture and, as a result, yields poor ductility. In low iron (less than 0.1 wt%) Al-Si-Mg alloys, the mechanical properties in the as cast, as well as heat treated conditions, are mainly controlled by the eutectic Si charatersitics. Increasing the iron content and, hence, the volume fraction of Fe-based intermetallics leads to a complex fracture mode.
机译:目前的工作是在Al-7%Si-0.4%Mg-X合金(其中X = Mg,Fe,Sr或Be)上进行的,其中研究了凝固速率对共晶硅特性的影响。采用两种凝固速率,分别对应于24和65μm的枝晶臂间距(DAS)。将具有24μmDAS的样品在540°C溶液中固溶处理5和12 h,然后在65°C的温水中淬灭。使用图像分析仪测量共晶Si颗粒的特性。结果表明,添加0.05%Be导致Si颗粒的部分改性。仅当Sr的添加量为150-200 ppm时,才能完全改性,具体取决于所施加的固化速率。 Sr改性合金中Mg的含量增加到0.8%会导致Sr作为主要改性剂的有效性降低。当由于Be-Fe相互作用而使Be处理的合金中的Fe含量增加时,得出了类似的观察结果。过度改性导致硬质富Sr颗粒(主要是Al4SrSi2)析出,而过热则导致Al-Cu共晶并因此周围的基体开始熔化。这两个因素都会导致合金机械性能的下降。此外,长的针状硅颗粒的存在加速了断裂的发生,结果导致延展性差。在低铁(小于0.1 wt%)的Al-Si-Mg合金中,铸态的机械性能以及热处理条件主要由共晶Si特性控制。铁含量的增加以及因此铁基金属间化合物的体积分数的增加导致复杂的断裂模式。

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