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The Optimum Process to Produce High-Strength Cast/Forged Al–8Zn–2.5Mg–1Cu Alloy

机译:生产高强度铸造/锻造Al-8%Zn-2.5%Mg-1%Cu合金的最佳方法

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摘要

Al−8Zn−2.5Mg−1Cu alloy casting blocks were subjected to homogenization and annealing. The treated blocks were then held at different temperatures and forged in different dies to obtain 20 mm-thick plates. After T73 heat treatment, the plates were cut and machined to obtain tensile bar samples that were further subjected to tensile and potentiodynamic polarization tests. Upon analyzing the experimental results, the subzero-treated and forged samples (SO) developed fine grains in their matrix and displayed yield stress (YS) about 400 MPa and an elongation of 11%. The hot-forged samples (HC) displayed a relatively higher YS slightly >440 MPa and a lower elongation of 4%. The intermetallic compound particles confined to the HC decreased its corrosion resistance to be worse than that of the SO. All anodized and sealed samples effectively improved their corrosion resistance. Due to its fine grains, the anodized SO sample produced a higher Icorr than the anodized HC sample.
机译:al-8zn-2.5mg-1cu合金铸造块进行均质化和退火。然后将处理的块保持在不同的温度下并在不同的模具中锻造以获得20mm厚的板。在T73热处理之后,切割并加工板以获得进一步进行拉伸和电位偏振测试的拉伸棒样品。在分析实验结果时,亚类处理和锻造样品(SO)在其基质中发育含有细粒,并显示出约400MPa的屈服应力(Ys)和11%的伸长率。热锻造的样品(HC)略高于略高的ys,略高于440mPa,较低伸长率为4%。限制在HC上的金属间化合物颗粒降低了其腐蚀性耐腐蚀性而不是所以的耐腐蚀性。所有阳极氧化和密封样品都有效地提高了它们的耐腐蚀性。由于其细粒,阳极氧化,因此样品比阳极氧化HC样品产生更高的ICORR。

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