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Titlebook: 13th International Conference on Aluminum Alloys (ICAA 13); Conference Proceedin Hasso Weiland (Technical Fellow),Anthony D. Rollet Confere

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Dislocation Density Changes in Ultrafine-grain Aluminum during Tensile Deformationn size on dislocation multiplication behavior was investigated. In samples with smaller grains, the increase in dislocation density during tensile deformation was larger and the decrease in dislocation density after unloading via fracture was also larger.
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Improvement in the Characterization of the 2099 Al-Li Alloy by FE-SEM micro scales with relevant details. Its ability to probe the distribution of precipitates from nano-to micro-sizes throughout the matrix makes Field-Emission Scanning Electron Microscopy a suitable technique for the characterization of metallic alloys.
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Towards new aluminium alloys through advances in atom probe microscopyvital position in the development road-maps for new alloys. Key aspects of the enabling science (emphasized in this abstract) are presented and applied to studies of Al alloys. Importantly, it is also shown how the insight gained can be used to explain and improve the alloys’ engineering properties.
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Monitoring Precipitation during Rapid Quenching of Aluminium Alloys by Calorimetric Reheating Experiveloped, to monitor precipitation during rapid quenching of aluminium alloys by calorimetric reheating experiments. Quenching and reheating experiments of high alloyed, quench sensitive aluminium alloys, like 7049A will be presented.
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