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Please use this identifier to cite or link to this item: http://hdl.handle.net/11375/12059
Title: LARGE DEFORMATION BEHAVIOR OF CAST A356 ALUMINUM ALLOY UNDER UNIAXIAL TENSION, COMPRESSION AND V-BENDING
Authors: Marzouk, Mahmoud M.
Advisor: Jain, Mukesh
Shankar, Sumanth
McDermid, Joe
Department: Mechanical Engineering
Keywords: A356;Strain Localization;Damage;Particle Cracking;Mechanical Testing;Mechanical Engineering;Mechanical Engineering
Publication Date: 2012
Abstract: <p>This work is an experimental approach to understand the effect of the microstructure on large strain deformation behavior of A356 alloy (with various additions of titanium and strontium) under uniaxial tensile, compressive and V-bend loading conditions. The studies were carried out on unmodified and Sr-modified A356 Al alloy, where Sr was added to refine the morphology of the eutectic Si phase particles. The two variants were then used to study the effect of size and shape distributions of Si eutectic phase particles within the material on the deformation behavior under uniaxial tension, compression and V-bending conditions. The alloy with a modified and refined eutectic Si phase particles showed significant improvement in ductility and bendability, whereas the differences in compression were not appreciable. In addition to Sr addition, Ti was also added as a grain refiner to the alloys at three different levels to obtain microstructures with different grain sizes. The results in the form of full field strain maps show that the larger grained alloy exhibits extensive strain inhomogeneity, whereas the grain refined alloy shows a more homogenous loading pattern.</p>
URI: http://hdl.handle.net/11375/12059
Identifier: opendissertations/6977
7986
2820602
Appears in Collections:Open Access Dissertations and Theses

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