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Effect of intermediate heat treatment on microstructure and texture evolution of continuous cast Al-Mn-Mg alloy sheet

机译:中间热处理对连铸Al-Mn-Mg合金薄板组织和组织演变的影响

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摘要

The microstructure and crystallographic texture evolution of continuous-cast, hot-rolled Al-Mn-Mg alloy sheet during cold rolling and subsequent annealing was investigated. All specimens cut from the as-received sheet were cold rolled and subsequently annealed, with some of these specimens receiving an intermediate heat treatment (IHT) prior to cold rolling. It was found that the degree of deformation and temperature of the annealing had a significant effect on the final grain size and texture of the sheet specimens, respectively. Furthermore, the IHT altered the development of the microstructure and texture of the final sheet specimens when compared to similarly produced specimens without it. For the sheet specimens without the IHT, a severely elongated grain structure was found in which the texture was dominated by a strong P orientation {011}<566>, despite the fact that the specimen was completely recrystallized. In contrast, specimens receiving the same cold rolling and annealing conditions but with the IHT had an equiaxed grain structure with a sharp Cube orientation {001}<100>. Counterbalancing the deformation textures from rolling with a sharp Cube orientation from annealing may lead to reduced earing behavior of CC Al-Mn-Mg alloy sheet products during deep drawing applications.
机译:研究了连续铸造的热轧Al-Mn-Mg合金薄板在冷轧及随后退火过程中的组织和结晶组织演变。从接收到的板材上切下的所有试样均进行冷轧,然后进行退火,其中一些试样在冷轧之前经过中间热处理(IHT)。发现退火的变形程度和温度分别对片状试样的最终晶粒尺寸和织构有显着影响。此外,与不带IHT的类似试样相比,IHT改变了最终试样的显微组织和织构发展。对于没有IHT的片状试样,尽管试样已完全重结晶,但发现晶粒严重拉长,其纹理以强P取向{011} <566>为主。相反,接受相同冷轧和退火条件但具有IHT的样品具有等轴晶结构,具有锐利的立方取向{001} <100>。平衡轧制产生的变形组织和退火产生的锐利的立方取向可能会导致CC Al-Mn-Mg合金薄板产品在深冲过程中降低耳垂行为。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第6期|1887-1898|共12页
  • 作者单位

    Alcoa Technical Center 100 Technical Drive 15069-0001 Alcoa Center PA;

    Metallurgy Division Material Sciences and Engineering Laboratory National Institute of Standards and Technology 20899-8553 Gaithersburg MD;

    Metallurgy Division Material Sciences and Engineering Laboratory National Institute of Standards and Technology 20899-8553 Gaithersburg MD;

    Department of Chemical ampamp Materials Engineering University of Kentucky 40506-0046 Lexington KY;

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