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Modeling Dissolution in Aluminum Alloys

Tracie Lee Durbin, Thomas Sanders

2005Englishphysical metallurgyphase transformationsmicrostructurealloysaluminum alloysdissolution

Abstract

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In this dissertation, the focus is on modeling the dissolution process in aluminum alloys, an essential aspect of materials science that impacts the performance and durability of aluminum components. The primary objective of this research is to develop a theoretical framework that accurately describes the dissolution kinetics of aluminum alloys under various conditions. Methodologically, the study combines both experimental investigations and computational simulations to explore the parameters influencing dissolution rates, including temperature, alloy composition, and microstructural features. The results indicate a significant correlation between these factors and the dissolution behavior, providing insights into optimizing process conditions for enhanced material performance. This work contributes valuable knowledge to the field of mechanical engineering by advancing the understanding of dissolution mechanisms in aluminum alloys and offering a reliable model for predicting the behavior of these materials in practical applications.

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@article{916c6a87-4dee-4b2b-9ab1-762db6e67d84,
  title={Modeling Dissolution in Aluminum Alloys},
  author={Tracie Lee Durbin and Thomas Sanders},
  year={2005},
  language={English}
}
TY  - JOUR
TI  - Modeling Dissolution in Aluminum Alloys
AU  - Tracie Lee Durbin
AU  - Thomas Sanders
PY  - 2005
LA  - English
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