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首页> 外文期刊>Materials and Manufacturing Processes >Stress Corrosion Cracking Resistant Aluminum Alloys: Optimizing Concentrations of Alloying Elements and Tempering
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Stress Corrosion Cracking Resistant Aluminum Alloys: Optimizing Concentrations of Alloying Elements and Tempering

机译:耐应力腐蚀开裂铝合金:优化合金元素的浓度和回火

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摘要

The objective of this study is to develop a new family of aluminum alloys with superior stress corrosion cracking resistance (SCCR) and mechanical properties. This approach uses experimentally obtained stress corrosion resistance, tensile strength, and yield strength data from the literature and then performs hybrid multiobjective evolutionary optimization combined with multidimensional response surfaces. This software has the proven capability to deal with various alloy design applications using minimal amount of experimental data. The selected objectives in this study are superior stress corrosion resistance, tensile strength, and yield strength. The design variables are concentrations of alloying elements and the individual alloy tempers as they are important parameters that directly affect macroscopic properties and microscopic details of the alloy such as grains, phases, precipitates, etc. The computational trials yield optimal alloys' chemical compositions and standard thermal treatment protocols for the best combination of superior stress corrosion resistance and mechanical properties. Single-objective optimization results confirm the known experimental observations that dilute Al alloys yield the best corrosion resistance at the expense of tensile strength. Optimizations with two simultaneous objectives and more alloying elements create better trade-off solutions. Quality and number of initially available experimentally evaluated alloys have decisive effects on accuracy of this alloy design method.
机译:这项研究的目的是开发一种具有优异的抗应力腐蚀开裂性(SCCR)和机械性能的新型铝合金。该方法使用从文献中通过实验获得的抗应力腐蚀性能,抗张强度和屈服强度数据,然后结合多维响应面执行混合多目标进化优化。该软件具有使用最少的实验数据来处理各种合金设计应用的成熟能力。在这项研究中选择的目标是优异的抗应力腐蚀性能,拉伸强度和屈服强度。设计变量是合金元素的浓度和各个合金的回火,因为它们是直接影响合金的宏观性能和微观细节(例如晶粒,相,沉淀物等)的重要参数。计算试验得出了最佳合金的化学成分和标准热处理方案可实现优异的抗应力腐蚀性能和机械性能的最佳组合。单目标优化结果证实了已知的实验观察结果,即稀释的铝合金以拉伸强度为代价可获得最佳的耐腐蚀性。具有两个同时目标和更多合金元素的优化可产生更好的权衡解决方案。最初可用的经过实验评估的合金的质量和数量对这种合金设计方法的准确性具有决定性的影响。

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