Hot-compression behaviors of W-50%Cu composite

The hot compression behaviors of W-50%Cu composite were investigated at the strain rate range from 0.01 to 5.00 s −1 and the temperature range from 850 to 1000 °C on Gleeble-1500D hot simulator. The results show that the flow stress during hot compression of W-50%Cu composite is strongly affected by...

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Published inRare metals Vol. 30; no. Suppl 1; pp. 610 - 613
Main Authors Liu, Yong, Zhao, Ruilong, Tian, Baohong, Zhang, Xiaowei
Format Journal Article
LanguageEnglish
Published Springer Berlin Heidelberg Nonferrous Metals Society of China 01.03.2011
Springer Nature B.V
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Abstract The hot compression behaviors of W-50%Cu composite were investigated at the strain rate range from 0.01 to 5.00 s −1 and the temperature range from 850 to 1000 °C on Gleeble-1500D hot simulator. The results show that the flow stress during hot compression of W-50%Cu composite is strongly affected by the compression temperature and the strain rate. Moreover, the flow stress decreases with the raising deforming temperature, and increases with the increasing strain rate. The flow stress of the W-50%Cu composite at high temperature can be expressed by Arrhenius model, and the values of structural factor A , stress scale parameter α , stress index n and hot deformation activation Q are 3.18 × 10 9 s −1 , 0.0133 MPa −1 , 6.27393 and 239.442 kJ/mol, respectively.
AbstractList The hot compression behaviors of W-50%Cu composite were investigated at the strain rate range from 0.01 to 5.00 s^sup -1^ and the temperature range from 850 to 1000 °C on Gleeble-1500D hot simulator. The results show that the flow stress during hot compression of W-50%Cu composite is strongly affected by the compression temperature and the strain rate. Moreover, the flow stress decreases with the raising deforming temperature, and increases with the increasing strain rate. The flow stress of the W-50%Cu composite at high temperature can be expressed by Arrhenius model, and the values of structural factor A, stress scale parameter α, stress index n and hot deformation activation Q are 3.18 × 10^sup 9^ s^sup -1^, 0.0133 MPa^sup -1^, 6.27393 and 239.442 kJ/mol, respectively.[PUBLICATION ABSTRACT]
The hot compression behaviors of W-50%Cu composite were investigated at the strain rate range from 0.01 to 5.00 s −1 and the temperature range from 850 to 1000 °C on Gleeble-1500D hot simulator. The results show that the flow stress during hot compression of W-50%Cu composite is strongly affected by the compression temperature and the strain rate. Moreover, the flow stress decreases with the raising deforming temperature, and increases with the increasing strain rate. The flow stress of the W-50%Cu composite at high temperature can be expressed by Arrhenius model, and the values of structural factor A , stress scale parameter α , stress index n and hot deformation activation Q are 3.18 × 10 9 s −1 , 0.0133 MPa −1 , 6.27393 and 239.442 kJ/mol, respectively.
Author Tian, Baohong
Liu, Yong
Zhang, Xiaowei
Zhao, Ruilong
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CitedBy_id crossref_primary_10_1016_j_ijrmhm_2015_04_031
crossref_primary_10_1007_s11665_020_04619_x
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Issue Suppl 1
Keywords W-50%Cu composite
flow stress
hot compression behaviors
Arrhenius model
Language English
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PublicationTitle Rare metals
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Springer Nature B.V
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Snippet The hot compression behaviors of W-50%Cu composite were investigated at the strain rate range from 0.01 to 5.00 s −1 and the temperature range from 850 to 1000...
The hot compression behaviors of W-50%Cu composite were investigated at the strain rate range from 0.01 to 5.00 s^sup -1^ and the temperature range from 850 to...
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SubjectTerms Biomaterials
Chemistry and Materials Science
Energy
Materials Engineering
Materials Science
Metallic Materials
Nanoscale Science and Technology
Physical Chemistry
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Title Hot-compression behaviors of W-50%Cu composite
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