MATERIALS TRANSACTIONS
Online ISSN : 1347-5320
Print ISSN : 1345-9678
ISSN-L : 1345-9678
Effect of Temperature Field and Mechanical Properties of Casting on Prediction of Hot Tearing Tendency Using FEM Thermal Stress Analysis
Ryosuke TakaiTatsuya TsunodaYasutaka KawadaRei HiroharaToshimitsu OkaneMakoto Yoshida
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2018 年 59 巻 8 号 p. 1333-1340

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It is known that hot tearing tendency increases with the increase in the cooling rate of casting during the solidification. As the direct control factors of the hot tearing, the cooling rate dependences of the temperature field of the casting and the mechanical property of alloys in the semi-solid state have been implied. However, quantitative evaluation is not clarified yet to show which parameters is more important to predict hot tearing tendency.

In this study, through the thermal stress analysis using cooling rate-dependent temperature fields of casting and cooling rate-dependent creep parameters in the semi-solid state, hot tearing tendency was predicted for an Al–Mg alloy during the solidification. For the prediction, the maximum principal creep strain accumulated during the solidification was used as the indicator of hot tearing tendencies. Then, the hot tearing tendencies were compared with experimental results. As a result, in the cooling rate range of this study which was corresponding to gravity die casting, it was found that the temperature fields are relatively more critical to predict hot tearing tendency than the creep parameters.

 

This Paper was Originally Published in Japanese in J. JFS 89 (2017) 623–630.

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© 2018 Japan Foundry Engineering Society
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