首页> 外文期刊>Russian Journal of Non-Ferrous Metals >Investigation into the Possibility of Fabricating Boraluminum Rolling of Increased Strength without Homogenization and Quenching
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Investigation into the Possibility of Fabricating Boraluminum Rolling of Increased Strength without Homogenization and Quenching

机译:在不均质化和淬火的情况下调查制造增加强度的硼铝轧制的可能性

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摘要

Aluminum alloys of the Al-Cu-Mn (Zr) system possess high strength and manufacturability without heat treatment (HT). In order to investigate the possibility of fabricating an aluminum boron-containing alloy in the form of sheet rolling with increased strength without the HT, Al-2% Cu-1.5% Mn-2% B and Al-2% Cu-1.5% Mn-0.4% Zr-2% B alloys are prepared. To exclude the deposition of refractory boride particles, smelting is performed in a RELTEK induction furnace providing intense melt stirring. The smelting temperature is 950-1000 degrees C. Pouring is performed into 40 x 120 x 200 mm graphite molds. It is established using computational methods (Thermo-Calc) that manganese forms complex borides with aluminum and zirconium at the smelting temperature and a sufficient amount of manganese remains in liquid, while zirconium is almost absent in it. The formation of AlB2Mn2 complex boride is proved experimentally (scanning electron microscopy and micro X-ray spectral analysis), but the amount of manganese remaining in the solid solution is sufficient to form particles of the Al20Cu2Mn3 phase in an amount reaching 7 wt %. Boron in the zirconium-containing alloy stimulates the isolation of primary crystals Al3Zr, in connection with which an insufficient amount of zirconium remains in the aluminum solid solution for strengthening. The possibility of fabricating thin-sheet rolling smaller than 0.3 mm in thickness with uniformly distributed agglomerations of the boride phase with a particle size smaller than 10 mu m is shown. A high level of strength (up to 543 MPa) is attained with no use of quenching or aging due to the isolation of dispersoids of the Al20Cu2Mn3 phase during hot deformation (t = 450 degrees C).
机译:Al-Cu-Mn(Zr)系统的铝合金具有高强度和制造性,无需热处理(HT)。为了探讨以纸张轧制形式制造含铝硼合金的可能性,而没有HT,Al-2%Cu-1.5%Mn-2%B和Al-2%Cu-1.5%Mn制备0.4%ZR-2%B合金。为了排除耐火硼化物颗粒的沉积,在提供强烈熔体搅拌的Reltek感应炉中进行熔炼。熔炼温度为950-1000℃。浇注到40×120×200mm石墨模具中。使用计算方法(Thermo-Calc)建立,即锰在冶炼温度下与铝和锆形成复合硼化物,并且足够量的锰保留在液体中,而锆几乎不存在。实验证明了Alb2Mn2复合硼化物的形成(扫描电子显微镜和微X射线分析),但是固体溶液中剩余的锰的量足以形成Al20Cu2MN3相的颗粒,其量达到7wt%。含锆合金中的硼刺激原发性晶体Al3Zr的分离,结合在该铝固体溶液中保持不足的锆残留物以加强。示出了厚度小于0.3mm的薄片轧制的可能性,示出了小于10μm的纯硼相的均匀分布聚集。由于在热变形期间的Al20Cu2MN3相的分离(T = 450℃)的分离而没有使用淬火或衰老,获得高水平的强度(最多543MPa)。

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