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Grain refinement of 5083 based aluminum alloy sheets by warm rolling

机译:温暖轧制5083铝合金板材的晶粒细化

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An attempt was made to refine the grain structure of the 5083 based aluminum alloy containing Zn, Cu and Zr, by employing a new warm rolling method under the control of both roll temperature and material temperature. Samples were rolled at temperature ranging from 200 deg C to 400 deg C with re-heating after each rolling pass in order to keep sample temperature. As rolling temperature gets higher, the subgrain structure becomes more stable. In the ease of rolling at 400 deg C, fine grains with diameter less than 3 mu m are observed after final annealing. It is also found that the sheet rolled at 400 deg C has a high ratio of low angle boundaries, less than 15 deg, after final annealing. On the other hand, the sheets rolled at below 250 deg C show a fully recrystallized structure. The warm-rolled sheets have strong beta-fiber orientations. There is no apparent change caused by the subsequent annealing in the orientation density of the beta-fiber in the sheet rolled at 400 deg C. The yield strength of a sheet in O-temper rolled at 400 deg C is 40 percent higher than that of a cold rolled sheet.
机译:通过在辊温和材料温度的控制下采用新的暖轧方法,通过采用新的暖轧方法来改进含有Zn,Cu和Zr的5​​083铝合金的晶粒结构。在每个轧制通过后重新加热以保持样品以保持样品温度以保持样品在200℃至400℃的温度下轧制。随着轧制温度升高,粒子结构变得更加稳定。在400℃的易于轧制中,在最终退火后观察到直径小于3μm的细粒。还发现,在最终退火后,在400℃下轧制的片材的低角度边界的高比率小于15°。另一方面,在低于250℃下轧制的片材显示出完全再结晶的结构。温轧板具有强β-纤维取向。由于在400℃下轧制的β-纤维的取向密度的随后退火而导致的明显变化。在400℃下滚动的换纸的屈服强度比40%高出40%冷轧板。

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