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Effects of chromium addition on the metallurgy and P/M processing response of Alumix 431D.

机译:铬的添加对Alumix 431D的冶金和P / M处理响应的影响。

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摘要

The ever growing industry of Powder Metallurgy (P/M) is developing to include new alloys and improve those currently available. This project relates to the optimization of a commercially available Al-Zn-Mg-Cu based alloy (Alumix 431D). This alloy is the P/M equivalent of the wrought 7075 alloy, and yields some of the top performance found in any available aluminum alloy. Optimization of the alloy has been conducted with a focus on sintering conditions in particular the effect of sintering temperature and post-sintering cooling. Five sintering temperatures were investigated and the optimal temperature was found to be 605°C.Cr was added in trace amounts as per literature recommendations in an attempt to improve corrosion resistance. Both the Cr-free and Cr-containing alloys were then assessed for post-sinter cooling effects. The Alumix 431D w/Cr compacted and sintered to a higher density which further resulted in improved hardness over the Cr-free counterpart. The cooling profile was modified to include an increasingly larger post-sinter furnace-cooling section, before gas quenching. Seven quenching temperatures were chosen to investigate ranging from the sintering temperature (605°C) down to 480°C. This furnace cooling allowed the alloy-rich liquid phase to dwell for an extended time at elevated temperature and thereby diffuse into the matrix grains increasing the alloy content. This was confirmed through EPMA and correlated with an increase in mechanical properties. For both alloys peak hardness was produced by specimens cooled to 520°C before quenching. Tensile strength also increased by as much as 12% when furnace cooled to 540°C.The heat treatment parameters were determined to yield an optimal T6 temper. Specimens of both alloys processed under all conditions were then subjected to this heat treatment and further characterized. Many of the improvements offered by furnace cooling that were obvious in the T1 'as-sintered' product, became less pronounced after heat treatment. Corrosion resistance was also studied and compared to the wrought 7075 equivalent. For 'as-sintered' P/M components the Tafel extrapolation was less effective in accurately determining corrosion rate due to the effect of porosity on surface area. To remedy this, samples were hot worked to near full density (>99.5% theoretical), heat treated and tested. The hot worked P/M samples performed up to 2x better than the wrought 7075 with respect to corrosion current densities.
机译:粉末冶金(P / M)不断发展的行业正在发展,以包括新的合金并改进现有的合金。该项目涉及对市售的Al-Zn-Mg-Cu基合金(Alumix 431D)的优化。这种合金的P / M与7075锻造合金相当,并且在任何可用的铝合金中都具有一些顶级性能。已经着重于烧结条件进行了合金的优化,特别是烧结温度和烧结后冷却的影响。研究了五个烧结温度,发现最佳温度为605°C。根据文献建议,以痕量添加Cr以提高耐腐蚀性。然后评估无铬和含铬合金的烧结后冷却效果。压实和烧结的Alumix 431D w / Cr达到更高的密度,与不含Cr的产品相比,进一步提高了硬度。在气体淬火之前,对冷却曲线进行了修改,使其包括一个越来越大的烧结后炉冷却段。选择了七个淬火温度以研究从烧结温度(605°C)降至480°C的范围。该炉冷却使得富含合金的液相在升高的温度下延长停留时间,从而扩散到基体晶粒中,从而增加了合金含量。通过EPMA证实了这一点,并与机械性能的提高相关。对于两种合金,淬火前冷却至520°C的试样均会产生峰值硬度。当炉子冷却到540°C时,抗拉强度也提高了12%。确定了热处理参数以产生最佳的T6回火。然后将在所有条件下加工的两种合金的样品进行该热处理并进一步表征。 T1“烧结后”产品中明显的炉冷却带来的许多改进在热处理后变得不那么明显。还研究了耐腐蚀性并将其与变形的7075等效物进行了比较。对于“烧结”的P / M组件,由于孔隙率对表面积的影响,Tafel外推法在准确确定腐蚀速率方面效果较差。为了解决这个问题,将样品热加工至接近全密度(理论值> 99.5%),进行热处理和测试。就腐蚀电流密度而言,热加工的P / M样品的性能比锻造的7075高2倍。

著录项

  • 作者

    Mosher, Michael Patrick.;

  • 作者单位

    Dalhousie University (Canada).;

  • 授予单位 Dalhousie University (Canada).;
  • 学科 Engineering Metallurgy.Engineering Materials Science.
  • 学位 M.A.Sc.
  • 年度 2009
  • 页码 139 p.
  • 总页数 139
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 非洲史;
  • 关键词

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