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首页> 外文期刊>Materials Characterization >Asymmetric cross rolling (ACR): A novel technique for enhancement of Goss/Brass texture ratio in Al-Cu-Mg alloy
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Asymmetric cross rolling (ACR): A novel technique for enhancement of Goss/Brass texture ratio in Al-Cu-Mg alloy

机译:非对称交叉轧制(ACR):一种用于增强Al-Cu-Mg合金的高峰/黄铜质地比的新技术

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摘要

The present work focused on the effect of asymmetric cross rolling (ACR) process as a novel technique on microstructure and texture evolution of Al-Cu-Mg alloys. The microstructural observation and bulk texture from RD-TD plane of the initial and deformed samples were characterized by optical microscopy (OM) and X-ray diffraction (XRD). It was found that the deformed Al-Cu-Mg alloy consisted of strong Goss, Rotated Goss, Goss Brass, and a-fiber textures. Usually, straight rolling leads to a significant strengthening of the Brass component with increasing strain in the Al-Cu-Mg alloy, but for asymmetrically cross rolled samples, the Goss orientation was stable after 40% deformation. Results showed that the ACR process was effective to intensify (up to 1.51 after 30% thickness reduction) the low Goss/Brass texture ratio often existing in the rolled Al-Cu-Mg alloy. During 30% ACR, the dynamic recrystallization (DRX) occurred, which led to increasing the intensity of Goss and Cube components and the fraction of extra high angle grain boundaries (EHAGBs).
机译:目前的作品集中于非对称交叉轧制(ACR)过程作为一种新颖的基于组织和纹理演化的新技术。通过光学显微镜(OM)和X射线衍射(XRD)表征来自初始和变形样品的RD-Td平面的微观结构观察和散装纹理。结果发现,变形的Al-Cu-Mg合金由强大的高空,旋转的高空,高斯黄铜和A纤维纹理组成。通常,直线滚动导致黄铜组分随着Al-Cu-Mg合金中的增加而显着强化,但对于不对称的交叉轧制样品,在40%变形后,高斯取向稳定。结果表明,ACR工艺可有效加强(在厚度减少30%后高达1.51),轧制的Al-Cu-Mg合金中通常存在的低高峰/黄铜质地比。在30%ACR期间,发生动态再结晶(DRX),导致增加高空和立方体部件的强度以及超高角晶界(EHAGBS)的一部分。

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