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Functionally graded Al alloy matrix in-situ composites
Published in
2010
Volume: 41
   
Issue: 1
Pages: 242 - 254
Abstract
In the present work, functionally graded (FG) aluminum alloy matrix in-situ composites (FG-AMCs) with TiB2 and TiC reinforcements were synthesized using the horizontal centrifugal casting process. A commercial Al-Si alloy (A356) and an Al-Cu alloy were used as matrices in the present study. The material parameters (such as matrix and reinforcement type) and process parameters (such as mold temperature, mold speed, and melt stirring) were found to influence the gradient in the FG-AMCs. Detailed microstructural analysis of the composites in different processing conditions revealed that the gradients in the reinforcement modify the microstructure and hardness of the Al alloy. The segregated in-situ formed TiB2 and TiC particles change the morphology of Si particles during the solidification of Al-Si alloy. A maximum of 20 vol pct of reinforcement at the surface was achieved by this process in the Al-4Cu-TiB2 system. The stirring of the melt before pouring causes the reinforcement particles to segregate at the periphery of the casting, while in the absence of such stirring, the particles are segregated at the interior of the casting. © 2009 The Minerals, Metals & Materials Society and ASM International.
About the journal
JournalMetallurgical and Materials Transactions A: Physical Metallurgy and Materials Science
ISSN10735623
Open AccessNo
Concepts (28)
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    Al alloys
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    AL-CU ALLOYS
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    Al-si alloy
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    ALUMINUM ALLOY MATRICES
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    Functionally graded
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    In-situ
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    IN-SITU COMPOSITE
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    Material parameter
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    Matrix
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    MELT STIRRING
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    Microstructural analysis
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    MOLD TEMPERATURES
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    Process parameters
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    Processing condition
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    REINFORCEMENT PARTICLES
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    SI-PARTICLE
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    TIC PARTICLES
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    Aluminum alloys
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    CENTRIFUGAL CASTING
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    Copper alloys
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    Metallic matrix composites
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    Molds
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    Reinforcement
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    Silicon
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    Silicon alloys
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    TEMPERATURE INDICATING CAMERAS
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    TITANIUM CARBIDE
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    Aluminum