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Relationship between tensile and impact properties in Al-Si-Cu-Mg cast alloys and their fracture mechanisms

机译:Al-Si-Cu-Mg铸造合金的拉伸和冲击性能与断裂机理的关系

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An extensive study related to the investigation of the precipitation behavior of the CuAl_2 phase in various 319-type alloys containing strontium (Sr), iron (Fe) and phosphorus (P) alloying elements, and its dissolution during solution heat treatment at 490 ℃ for times up to 100 h was carried out in the present work. Furthermore, the effect of CuAl_2 and other intermetallics on the alloy performance under two different heat treatment conditions (i.e. T5 and T6) was also investigated through an examination of the tensile and impact properties. By comparing the experimental results, conclusions were drawn in terms of the optimum alloying elements, solidification parameters and heat treatment conditions {viz., Sr modification, Fe content, cooling rate and T6 condition). The fracture behaviors of the 319 base alloy and the Sr-modified 319 alloy containing ~1.2% Fe were also compared through a study of the fracture surfaces of the corresponding alloy samples. The results explicitly reveal that solution heat treatment plays a critical role in the dissolution of the CuAl_2 phase. Iron addition leads to an increased precipitation of brittle p-Al5FeSi platelets which act as preferred crack sites and dramatically reduce the impact properties, regardless of the value of dendrite arm spacing. Crack initiation usually occurs through the fragmentation of Si particles and p-Al_5FeSi platelets, and the crack propagates through the cleavage of p-Al_5FeSi platelets.
机译:在490℃固溶热处理过程中,研究了多种含锶(Sr),铁(Fe)和磷(P)的319型合金中CuAl_2相的析出行为及其溶解。在当前工作中最多进行了100小时。此外,还通过检查拉伸和冲击性能研究了CuAl_2和其他金属间化合物在两种不同热处理条件下(即T5和T6)对合金性能的影响。通过比较实验结果,得出了最佳合金元素,凝固参数和热处理条件(即Sr改性,Fe含量,冷却速率和T6条件)的结论。通过对相应合金样品的断裂表面的研究,还比较了319基合金和含〜1.2%Fe的Sr改性319合金的断裂行为。结果清楚地表明,固溶热处理在CuAl_2相的溶解中起关键作用。铁的添加导致脆性p-Al5FeSi血小板的沉淀增加,这是优选的裂纹位置,并且显着降低了冲击性能,无论枝晶臂间距的大小如何。裂纹萌生通常是通过Si颗粒和p-Al_5FeSi片的碎裂而发生的,并且裂纹通过p-Al_5FeSi片的裂解而扩展。

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