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Mathematical modeling and optimization of precipitation hardening of extrudable aluminum alloys.

机译:可挤压铝合金沉淀硬化的数学建模和优化。

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摘要

Al-Mg-Si alloys (6xxx series alloys) are very popular in extrusion industry and are generally known as high speed extrusion alloys. Extrusion die solution treatment and press quenching greatly facilities the precipitation hardening process since only the last aging process needs to be done. Time temperature choice is quite critical to get an optimum result. Strength and time plots for certain values of temperatures are available in literature, which are quite valuable if decisions are made manually. However, if selection is to be automated or we need the strength response at temperature not available in these plots, we need appropriate mathematical model for interpolating the results. A research is therefore, conducted and the objective of the study is to develop suitable mathematical models which correlate strength (yield strength and tensile strength) and process parameters (aging time and aging temperature) for each family of aluminum alloys. Aging characteristic curves of yield and tensile strength of three popular alloys of the family namely AA6061, AA6063, and AA6069 are analyzed. Based on the nature of these curves, a generalized mathematical model is developed for each alloys. Stepwise results are tabulated and a comprehensive comparison of predicted curves and actual curves is presented. Based on the model, cost optimization of the aging process is discussed in a general framework. The objective of the optimization study is to explore an approach to get a target strength with a minimum possible cost. Both aging parameters (time and temperature) are used simultaneously to get the minimum cost zones respectively.
机译:Al-Mg-Si合金(6xxx系列合金)在挤压工业中非常流行,通常被称为高速挤压合金。挤压模固溶处理和压力淬火大大简化了沉淀硬化过程,因为仅需要进行最后的时效过程。时间温度的选择对于获得最佳结果至关重要。某些温度值的强度和时间图可从文献中获得,如果手动做出决定,这将非常有价值。但是,如果要自动选择,或者我们需要这些图中没有的温度下的强度响应,则需要适当的数学模型来对结果进行插值。因此,进行了研究,并且该研究的目的是开发合适的数学模型,其将每个铝合金族的强度(屈服强度和拉伸强度)与工艺参数(时效时间和时效温度)相关联。分析了三种常见的合金AA6061,AA6063和AA6069的屈服和拉伸强度的时效特性曲线。根据这些曲线的性质,为每种合金建立了通用的数学模型。将逐步结果制成表格,并对预测曲线和实际曲线进行全面比较。基于该模型,在通用框架内讨论了账龄优化过程的成本优化。优化研究的目的是探索一种以最小可能的成本获得目标强度的方法。同时使用两个老化参数(时间和温度)分别获得最低成本区域。

著录项

  • 作者

    Rashid, Muhammad.;

  • 作者单位

    King Fahd University of Petroleum and Minerals (Saudi Arabia).;

  • 授予单位 King Fahd University of Petroleum and Minerals (Saudi Arabia).;
  • 学科 Engineering Mechanical.;Engineering Metallurgy.
  • 学位 M.S.
  • 年度 1997
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;冶金工业;
  • 关键词

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