Title of article :
Hot tearing susceptibility of binary Mg–Y alloy castings
Author/Authors :
Zhi Wang، نويسنده , , Yuanding Huang، نويسنده , , Amirthalingam Srinivasan، نويسنده , , Zheng Liu، نويسنده , , Felix Beckmann، نويسنده , , Karl-Ulrich Kainer، نويسنده , , Norbert Hort، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2013
Pages :
11
From page :
90
To page :
100
Abstract :
The influence of Y content on the hot tearing susceptibility (HTS) of binary Mg–Y alloys has been predicted using thermodynamic calculations based on Clyne and Davies model. The calculated results are compared with experimental results determined using a constrained rod casting (CRC) apparatus with a load cell and data acquisition system. Both thermodynamic calculations and experimental measurements indicate that the hot tearing susceptibility as a function of Y content follows the “image” shape. The experimental results show that HTS first increases with increase in Y content, reaches the maximum at about 0.9 wt.%Y and then decreases with further increase the Y content. The maximum susceptibility observed in Mg–0.9 wt.%Y alloy is attributed to its coarsened columnar microstructure, large solidification range and small amount of eutectic at the time of hot tearing. The initiation of hot cracks is monitored during CRC experiments. It corresponds to a drop in load increment on the force curves. The critical solid fractions at which the hot cracks are initiated are in the range from 0.9 to 0.99. It is also found that it decreases with increasing the content of Y. The hot cracks propagate along the dendritic or grain boundaries through the interdendritic separation or tearing of interconnected dendrites. Some of the formed cracks are possible to be healed by the subsequent refilling of the remained liquids.
Keywords :
Mg alloy , Thermodynamic , Hot tearing , X-ray micro-tomography , Grain structure
Journal title :
Materials and Design
Serial Year :
2013
Journal title :
Materials and Design
Record number :
1073002
Link To Document :
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