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Effects of Mn, Zn Additions and Cooling Rate on Mechanical and Corrosion Properties of Al-4.6Mg Casting Alloys

机译:Mn,Zn添加和冷却率对Al-4.6mg铸造合金机械和腐蚀性能的影响

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摘要

The mechanical properties of the Al-Mg alloy can be enhanced by adding metallic elements, but a continuous distribution of precipitates at grain boundaries leads to intergranular corrosion during sensitization treatment. In the present work, Mn, Zn additions, water cooling and furnace cooling were executed to investigate their effects on the mechanical and corrosion properties of the Al-4.6Mg alloy. Our results show that adding Mn to Al-4.6Mg alloys may produce grain refinement and dispersion strengthening, increasing tensile strength and hardness. The presence of Mn did not affect the corrosion resistance of Al-Mg alloys. Adding Zn to the Al-4.6Mg alloy increased tensile strength and hardness, but decreased corrosion resistance. Combined, the addition of Mn and Zn to the Al-4.6Mg alloy exhibited the highest tensile strength and hardness, but seriously reduced corrosion resistance. Furnace cooling substituted for water quenching could avoid intergranular corrosion, but slightly decreased the tensile strength and hardness by 7.0% and 6.8%, respectively.
机译:通过添加金属元素可以增强Al-Mg合金的机械性能,但在晶界沉淀物的连续分布导致敏化处理期间的骨间腐蚀。在本作工作中,执行Mn,Zn添加,水冷和炉冷却,以研究它们对Al-4.6mg合金的机械和腐蚀性能的影响。我们的结果表明,向Al-4.6mg合金添加Mn可以产生晶粒细化和分散强化,增加拉伸强度和硬度。 Mn的存在不影响Al-Mg合金的耐腐蚀性。将Zn添加到Al-4.6mg合金增加抗拉强度和硬度,但耐腐蚀性降低。结合,添加Mn和Zn至Al-4.6mg合金,表现出最高的拉伸强度和硬度,但严重降低耐腐蚀性。炉子冷却取代水猝灭可避免骨间腐蚀,但分别略微降低拉伸强度和硬度%7.0%和6.8%。

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