会议论文详细信息
7th International Conference on Advanced Materials and Structures
Simultaneous hot isostatic pressing and solution annealing of aluminum cast alloys followed by instantaneous aging at elevated temperatures
Hafenstein, S.^1 ; Werner, E.^1
Technical University of Munich, TUM Department of Mechanical Engineering, Institute of Materials Science and Mechanics of Materials, Garching b. München, Germany^1
关键词: Aircraft industries;    Aluminum silicons;    Elevated temperature;    Fully integrated;    Industrial production;    Rapid temperature;    Solution annealing;    Standard heat treatments;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/416/1/012084/pdf
DOI  :  10.1088/1757-899X/416/1/012084
来源: IOP
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【 摘 要 】

Age-hardenable aluminum - silicon - magnesium cast alloys are widely applied in automotive and aircraft industries. Hot isostatic pressing is a common method to increase the materials fatigue resistance by reducing the inner porosity of aluminum cast materials. In the presently followed industrial production route hot isostatic pressing is performed preceding the standard heat treatment consisting of solution annealing and aging. In previous work Hafenstein et. al. demonstrated the possibility to achieve an oversaturated condition with a sufficient amount of magnesium and silicon atoms dissolved in the aluminum matrix by performing rapid temperature changes in advanced hot isostatic presses. Hence, it becomes possible to combine hot isostatic pressing and solution annealing within a single process step and to perform aging at elevated temperatures immediately after hot isostatic pressing without the necessity of separate solution annealing. The present study evidences that the design of a fully integrated process which comprises not only hot isostatic pressing and solution annealing but also aging at elevated temperatures is possible thereby shortening further the overall processing time. It is shown that the benefit with respect to strength in such a combined process is due to the shortening of the time at room temperature between solution annealing and aging at elevated temperatures.

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