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Improvements to the strength and corrosion resistance of aluminum-magnesium-manganese alloys of near-AA5083 chemistry.

机译:接近AA5083化学性质的铝镁锰合金的强度和耐腐蚀性的改进。

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摘要

Aluminum alloys of the 5000 series (AI-Mg-Mn) are extremely popular in a wide range of applications that call for a balance of moderately high strength, good corrosion resistance, and light weight, all at a moderate cost. One of the most popular 5000 series alloys is designated A1-5083, containing, in addition to aluminum, approximately 4 wt% magnesium and 0.7 wt% manganese. In order to increase the range of versatility of this particular alloy, a number of modifications have been examined that will potentially improve the strength and corrosion resistance characteristics while maintaining a chemical composition that is very close to the proven 5083 alloy.; The strength of the 5083-based alloys under study are investigated with two goals in mind—to maximize the potential strength characteristics in a “standard” 5083 form through changes in minor processing parameters or through minor alloying additions. Increasing the standard alloy's potential is possible through improved efficiency of “preprocessing” heat treatments that maximize the homogeneous dispersion of secondary manganese-based particles. For the modified alloy study, additions of scandium and zirconium are shown to improve strength not only by forming secondary particles in the alloy, but also through substitutional solid solution strengthening, even when added at very small levels.; Corrosion resistance of these 5083-based alloys is investigated once again through minor alloying additions; specifically zinc, copper, and silver. Zinc is particularly effective in that it changes the corrosion-susceptible binary aluminum-magnesium phase that would otherwise form on grain boundaries following exposure to moderately elevated temperatures for extended periods of time to a ternary aluminum-magnesium-zinc phase. This chemical composition of this ternary phase that forms following zinc additions can be further altered through minor additions of copper and silver.; By determining threshold levels for these modifications while maintaining a chemical composition that is very near that of standard Al-5083, it can be shown that even minor modifications to processing and alloying parameters can have a favorable effect on the final bulk properties of the alloy. The increased range of strength and corrosion resistance of these lightly modified alloys make them more attractive in a broadened range of potential applications.
机译:5000系列铝合金(AI-Mg-Mn)在广泛的应用中非常受欢迎,要求以适中的成本实现适度的高强度,良好的耐腐蚀性和轻质之间的平衡。最受欢迎的5000系列合金之一称为A1-5083,除铝外,还包含约4 wt%的镁和0.7 wt%的锰。为了增加这种特殊合金的通用性范围,已经进行了许多修改,这些修改将潜在地改善强度和耐腐蚀性,同时保持非常接近于已证实的5083合金的化学成分。考虑到两个目标,对研究中的5083基合金的强度进行了研究-通过更改较小的加工参数或添加少量的合金来最大化“标准” 5083形式的潜在强度特性。通过提高“预处理”热处理的效率,可以最大程度地提高标准合金的潜力,从而最大程度地提高二级锰基颗粒的均匀分散性。对于改性合金的研究,添加of和锆不仅通过在合金中形成二次颗粒,而且还通过替代固溶体强化(即使添加量很小)也可以提高强度。通过少量添加合金,再次研究了这些5083基合金的耐蚀性。特别是锌,铜和银。锌是特别有效的,因为它改变了易腐蚀的二元铝镁相,否则该二元铝镁相会在暴露于适度升高的温度下较长时间后在晶界上形成三元铝镁锌相。添加锌后形成的该三元相的化学组成可以通过少量添加铜和银来进一步改变。通过确定这些修饰的阈值水平,同时保持非常接近标准Al-5083的化学组成,可以表明,即使对加工和合金化参数进行较小的修饰也可以对合金的最终整体性能产生有利影响。这些轻度改性合金的强度和耐腐蚀性的增加范围使其在广泛的潜在应用中更具吸引力。

著录项

  • 作者

    Carroll, Mark Christopher.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Materials Science.; Engineering Metallurgy.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 250 p.
  • 总页数 250
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;冶金工业;
  • 关键词

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