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A Methodology to Predict the Effects of Quench Rates on Mechanical Properties of Cast Aluminum Alloys

机译:淬火速率对铸造铝合金力学性能影响的预测方法

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摘要

The mechanical properties of age-hardenable Al-Si-Mg alloys depend on the rate at which the alloys are cooled after the solutionizing heat treatment. Quench factor analysis, developed by Evancho and Staley, was able to quantify the effects of quenching rates on the as-aged properties of an aluminum alloy. This method has been previously used to successfully predict yield strength and hardness of wrought aluminum alloys. However, the quench factor data for aluminum castings is still rare in the literature. In this study, the time-temperature during cooling and hardness were used as the inputs for quench factor modeling. The experimental data were collected using the Jominy end quench method. Multiple linear regression analysis was performed on the experimental data to estimate the kinetic parameters during quenching. Time-temperature-property curves of cast aluminum alloy A356 were generated using the estimated kinetic parameters. Experimental verification was performed on a cast engine head. The predicted hardness agreed well with that experimentally measured. The methodology described in this article requires little experimental effort and can also be used to experimentally estimate the kinetic parameters during quenching for other aluminum alloys.
机译:时效硬化的Al-Si-Mg合金的机械性能取决于固溶热处理后合金的冷却速率。由Evancho和Staley开发的淬火因子分析能够量化淬火速率对铝合金老化性能的影响。该方法先前已用于成功预测锻造铝合金的屈服强度和硬度。但是,铝铸件的淬火系数数据在文献中仍然很少。在这项研究中,冷却时的时间温度和硬度被用作淬火因子建模的输入。使用Jominy端淬方法收集实验数据。对实验数据进行多元线性回归分析,以估计淬火过程中的动力学参数。使用估计的动力学参数生成了铸造铝合金A356的时间-温度-特性曲线。在铸造的发动机盖上进行了实验验证。预测的硬度与实验测得的硬度非常吻合。本文中描述的方法需要很少的实验工作,也可以用于在其他铝合金淬火过程中通过实验估算动力学参数。

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  • 来源
    《Metallurgical and Materials Transactions B 》 |2007年第4期| 583-589| 共7页
  • 作者单位

    Center for Heat Treating Excellence Materials Science and Engineering Worcester Polytechnic Institute Worcester MA 01609 USA;

    Center for Heat Treating Excellence Materials Science and Engineering Worcester Polytechnic Institute Worcester MA 01609 USA;

    Houghton International Valley Forge PA USA;

    Tiffany ampamp Company Cumberland RI 02864 USA;

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