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Effect of Cold Deformation and Annealing on Microstructure and Mechanical Properties of 5083 Aluminum Alloy Sheets

机译:冷变形和退火对5083铝合金板微观结构和力学性能的影响

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5083 aluminum alloy, due to moderate strength, good thermal conductivity and formability, is an ideal structural material for car production. Influence of cold rolling process on microstructures and mechanical properties of 5083 aluminum alloys is significant and research hotspots. In this paper, cold deformation and annealing processes on grains, tensile properties and anisotropics of 5083 alloy sheets were studied. Results showed that incomplete recrystallization occured on 5083 alloy sheets when annealing temperature was at 300°C. The degree of recrystallization increased slightly with the cold deformation raised from 30% to 50% and varied slightly with prolonged annealing time from 2h to 4h. Furthermore, fully recrystallization occurred on 5083 alloy sheets at the annealing temperature above 320°C. Tensile strength of 5083 alloy sheets reduced significantly when the annealing temperature was raised from 300°C to 320°C, while it varied slightly when the annealing temperature continued to rise to 380°C.
机译:5083铝合金,由于中等强度,良好的导热性和成型性,是汽车生产的理想结构材料。冷轧过程对5083铝合金微观结构和力学性能的影响是显着的和研究热点。本文研究了5083个合金板的晶粒,拉伸性能和各向异性的冷变形和退火过程。结果表明,当退火温度为300℃时,在5083合金板上发生不完全重结晶。再结晶程度略微增加,冷变形从30%升高到50%,并在2小时至4h的延长的退火时间略微不同。此外,在320℃的退火温度下,在5083合金板上发生完全重结晶。当退火温度从300℃至320℃升高时,5083合金板的拉伸强度显着降低,而退火温度持续上升至380°C,则略微变化。

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