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Improvement in Strength of 2024 Al Alloy by Enhanced Solution Treatment

机译:通过增强溶液处理改善2024 Al合金的强度

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In this paper the effects of an enhanced solution and aging on the strengthening behavior of commercially available 2024Al alloy were investigated using tension testing and scanning electron microscopy. A differential scanning calorimeter (DSC) was used to measure the incipient melting behavior and then determine the technological parameter of an enhanced solution heat treatment for strengthening the 2024Al alloy. The results show that the incipient melting behavior of the commercially available 2024Al alloy was characterized by a small amount of liquid phase between the temperatures 773K to 788K. A solution treatment, appropriately enhanced by slowly increasing the solution temperature from 773K to 783K at a heating rate of 5K/h, can make the final solution temperature of the alloy higher than the conventional solution temperature of 773K. This improves the constituent phase solution without the formation of overheated microstructures. The results are the strength, especially the yield strength, and the resistance to over-aging can both be considerably improved without a large deterioration to tensile ductility.
机译:本文采用张力试验和扫描电子显微镜研究了增强溶液和老化对市售2024al合金的强化行为的影响。使用差分扫描量热计(DSC)来测量初期熔化行为,然后确定加强2024Al合金的增强溶液热处理的技术参数。结果表明,与市售2024Al合金的初熔行为温度773K到788K之间,其特征在于通过液相的量小。通过在5k / h的加热速率下缓慢将溶液温度从773k至783k缓慢增加溶液温度,适当增强,可以使合金的最终溶液温度高于常规溶液温度为773k。这改善了构成相溶液而不形成过热的微结构。结果是强度,尤其是屈服强度,并且对过度衰老的抗性无需大幅度地改善,而不会对拉伸延展性劣化。

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