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Texture Control of Aluminum and Magnesium Alloys by the Symmetric/Asymmetric Combination Rolling Process

机译:对称/不对称组合轧制工艺控制铝和镁合金的织构

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In order to develop favorable textures for deep drawing of Al-Mg-Si and Mg-Al-Zn alloys that are promising as automotive body panels, we have adopted the symmetric/asymmetric combination rolling (SACR) process consisting of conventional symmetric rolling and subsequent asymmetric rolling at relatively low reduction. The combination of symmetric cold rolling and asymmetric warm rolling for AA6022 sheets leads to the formation of "TD-rotated P-fiber texture", resulting in the evolution of {111}<110> recrystallization texture after solution treatment at a high temperature. The SACR processed and solution-treated sheets show a high average r-value with small in-plane anisotropy, and consequently the limiting drawing ratio increases significantly, compared to that of the cold-rolled and solution-treated sheets. In the case of AZ31 magnesium alloy, the SACR process by hot rolling causes the formation of a unique texture, which shows two (0001) poles with tilt angles of 0 and -40 degrees from the normal direction (ND) toward the rolling direction (RD). In addition, subsequent annealing weakens intensity of the double-peak texture, so that the drawability is greatly improved in comparison with that of the conventional warm-rolled sheets with a strong basal texture. At the same time, yield strength decreases to some extent, but the SACR processed and annealed sheets exhibit a good balance of strength and formability due to a mixed texture with basal and tilt components.
机译:为了为有望用作车身面板的Al-Mg-Si和Mg-Al-Zn合金进行深冲提供良好的织构,我们采用了对称/非对称组合轧制(SACR)工艺,该工艺包括常规的对称轧制和后续的工艺。不均匀轧制,压下率相对较低。 AA6022薄板的对称冷轧和不对称热轧的组合导致形成“ TD旋转的P纤维织构”,从而导致高温固溶处理后{111} <110>重结晶织构的演变。经过SACR处理和固溶处理的板材显示出较高的平均r值,且面内各向异性较小,因此与冷轧和固溶处理的板材相比,极限拉伸比显着提高。在AZ31镁合金的情况下,通过热轧进行的SACR工艺会形成独特的织构,这表明两个(0001)磁极从法线方向(ND)向轧制方向的倾斜角度分别为0和-40度( RD)。另外,随后的退火减弱了双峰织构的强度,因此与具有强基础织构的常规热轧板相比,可拉伸性大大提高。同时,屈服强度有所降低,但是由于具有基体和倾斜成分的混合织构,经SACR处理和退火的板材表现出强度和可成形性的良好平衡。

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