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摘要:
Design of experiments (DoE) based on a linear regression model was used to develop an Aluminum Copper-based casting alloy. The main objectives of the development were the achievement of (1) a high strength at elevated temperatures with (2) a low hot tearing tendency. Within the DoE, 17 different chemical compositions of the newly developed alloy AlCuMnCo(Ni) were cast, tested regarding hot tearing tendency and characterized in tensile tests up to 300 °C. Test results showed that the AlCuMnCo(Ni)-alloys from the DoE have high mechanical properties from ambient temperature up to 300 °C and thus feature a high thermal stability. It was found that the alloying elements Cu and Co increase the yield strength whereas Mn and Ni tend to increase the attainable elongation. Furthermore, some of the alloys showed no or a very low tendency to hot tearing a remarkable feature for Al-Cu alloys which are otherwise highly susceptible to hot tearing. The regression model that was developed from the test results fulfils a set of quality criteria and is therefore expected to provide reliable predictions. The predictive ability of the model was validated by casting and testing a sweet spot alloy. Results show that the model is sufficient for predicting the mechanical properties from ambient temperature to 250 °C. Furthermore, the sweet spot alloy surpasses the reference alloy AlCuNiCoSbZr (RR30) in its mechanical properties up to 250 °C. It was shown that by applying design of experiments, time and effort for an alloy development can effectively be reduced and simultaneously a high degree of information density about the alloying system considered is generated.
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篇名 Application of Design of Experiments for AlloyDevelopment of an Aluminum Copper Casting Alloy
来源期刊 材料科学与工程:中英文A版 学科 工学
关键词 Optimization ELEVATED temperature PROPERTIES mechanical PROPERTIES HOT TEARING AlCuMnCo(Ni).
年,卷(期) clkxygczy-a_2020,(1) 所属期刊栏目
研究方向 页码范围 6-23
页数 18页 分类号 TG1
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研究主题发展历程
节点文献
Optimization
ELEVATED
temperature
PROPERTIES
mechanical
PROPERTIES
HOT
TEARING
AlCuMnCo(Ni).
研究起点
研究来源
研究分支
研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
材料科学与工程:中英文A版
季刊
2161-6213
武汉洪山区卓刀泉北路金桥花园C座4楼
出版文献量(篇)
972
总下载数(次)
2
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