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Quench Sensitivity and Quench-induced Precipitation in High Strength 7xxx Series Aluminum Alloys

机译:淬火敏感性和淬火诱导的高强度7xxx系列铝合金沉淀

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This paper investigates the quench sensitivity of some selected 7xxx series Al alloys based on a Jominy End Quench method. The precipitate microstructures as a function of cooling rate during quenching are also characterized by using transmission electron microscopy (TEM). The results indicated that quench sensitivity and therefore the mechanical properties inhomogeneity in large plates or forgings can be predicted more accurately by the simultaneous combination of hardness and electrical conductivity measurements based on Jominy end quench. The hardness drop and conductivity increase in the novel alloy following a low cooling rate are much reduced compared to AA7050 and 7B04 because of a lower sensitivity to quench-induced precipitation on dispersoids. The novel alloy exhibited the least quench sensitivity, and the 7B04 Al alloy was the most quench sensitive. If the 90% of the maximum hardness is defined as the depth of quenching, the depth of 7B04 Al alloy, AA7050 through Jominy end quenching is about 20 and 55 mm respectively. Meanwhile, the depth of greater than 150 mm is achievable in the novel alloy, and hence it can be recommended to fabricate large section plates or forgings without compromising properties in the center of the part after a slow cool.
机译:本文研究了基于Jominy End淬火方法的一些选定的7xxx系列Al合金的淬火敏感性。通过使用透射电子显微镜(TEM),作为冷却速率作为冷却速率的函数的沉淀微结构也表征。结果表明,通过基于Jominy End淬火的硬度和电导率测量的同时组合,可以更准确地预测淬火敏感性,因此可以更准确地预测大板或锻件的机械性能。与AA7050和7B04相比,低冷却速率后的新型合金的硬度下降和电导率增加得多,因为在分散体上猝灭沉淀较低的敏感性。新型合金表现出最低淬火敏感性,7B04 Al合金是最淬火敏感性。如果最大硬度的90%定义为淬火深度,则7B04 Al合金的深度,AA7050通过Jominy End淬火分别为约20和55mm。同时,在新颖的合金中可以实现大于150毫米的深度,因此可以建议制造大截面板或锻件,而不会在缓慢凉爽之后损害部件中心的特性。

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