Tensile Properties and Hot-Tearing Tendencies of 3xxx Alloys

A set-up for tensile testing in the mushy zone allowing for studies of semi-solid mechanical behavior is available at SINTEF. A hot-tearing experimental set-up has recently been developed allowing for investigation of the hot-tearing susceptibility of industrial aluminium alloys and effects of e.g....

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Veröffentlicht in:Materials science forum 2014-06, Vol.794-796, p.95-100
Hauptverfasser: Johansson, Anders U., Azar, Amin, Kvithyld, Anne, Nordmark, Arne, M'Hamdi, Mohammed, Ellingsen, Kjerstin, Marson, Andrew
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container_end_page 100
container_issue
container_start_page 95
container_title Materials science forum
container_volume 794-796
creator Johansson, Anders U.
Azar, Amin
Kvithyld, Anne
Nordmark, Arne
M'Hamdi, Mohammed
Ellingsen, Kjerstin
Marson, Andrew
description A set-up for tensile testing in the mushy zone allowing for studies of semi-solid mechanical behavior is available at SINTEF. A hot-tearing experimental set-up has recently been developed allowing for investigation of the hot-tearing susceptibility of industrial aluminium alloys and effects of e.g. alloying composition and grain-refiner. Load and temperature are registered during constrained solidification giving information on the mechanical behavior of the alloy during solidification. Two crack-prone alloys in the 3xxx-series (A and B) have been investigated using both techniques and the results analyzed using information about solidification path from a thermo-physical model. Alloy B is found to be mechanically weaker in the interval most susceptible to hot-tearing in agreement with cast-house experience. This study shows that the experimental techniques combined with thermo-physical modeling and characterization allow for a better understanding of the hot-tearing sensitivity of the alloys. 
doi_str_mv 10.4028/www.scientific.net/MSF.794-796.95
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subjects Alloy development
Alloys
Composition effects
Intervals
Mechanical properties
Mushy zones
Semi-solid processing
Solidification
title Tensile Properties and Hot-Tearing Tendencies of 3xxx Alloys
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