Processing map and hot working mechanisms of Cu-Ag alloy in hot compression process

For Gu-Ag alloy, an important parameter called workability in the forming process of materials can be evaluated by processing maps yielded from the stress-strain data generated by hot compression tests at temperatures of 700–850 °C and strain rates of 0.01–10 s −1 . And at the true strain of 0.15, 0...

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Published inJournal of Central South University Vol. 22; no. 3; pp. 821 - 828
Main Authors Wang, Meng-han, Huang, Long, Chen, Ming-liang, Wang, Yan-li
Format Journal Article
LanguageEnglish
Published Heidelberg Central South University 01.03.2015
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ISSN2095-2899
2227-5223
DOI10.1007/s11771-015-2588-5

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Abstract For Gu-Ag alloy, an important parameter called workability in the forming process of materials can be evaluated by processing maps yielded from the stress-strain data generated by hot compression tests at temperatures of 700–850 °C and strain rates of 0.01–10 s −1 . And at the true strain of 0.15, 0.35 and 0.55, respectively, the responses of strain-rate sensitivity, power dissipation efficiency and instability parameter to temperature and strain rate were studied. Instability maps and power dissipation maps were superimposed to form processing maps, which reveal the determinate regions where individual metallurgical processes occur and the limiting conditions of flow instability regions. Furthermore, the optimal processing parameters for bulk metal working are identified clearly by the processing maps.
AbstractList For Gu-Ag alloy, an important parameter called workability in the forming process of materials can be evaluated by processing maps yielded from the stress-strain data generated by hot compression tests at temperatures of 700–850 °C and strain rates of 0.01–10 s −1 . And at the true strain of 0.15, 0.35 and 0.55, respectively, the responses of strain-rate sensitivity, power dissipation efficiency and instability parameter to temperature and strain rate were studied. Instability maps and power dissipation maps were superimposed to form processing maps, which reveal the determinate regions where individual metallurgical processes occur and the limiting conditions of flow instability regions. Furthermore, the optimal processing parameters for bulk metal working are identified clearly by the processing maps.
Author Wang, Meng-han
Wang, Yan-li
Chen, Ming-liang
Huang, Long
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Cu-Ag alloy
processing map
hot working mechanism
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Snippet For Gu-Ag alloy, an important parameter called workability in the forming process of materials can be evaluated by processing maps yielded from the...
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Title Processing map and hot working mechanisms of Cu-Ag alloy in hot compression process
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