YANG Zhiqiang, LIU Yong, TIAN Baohong, et al. Hot deformation and dynamic recrystallization of TiC(30vol%)/Cu-Al2O3 composites[J]. Acta Materiae Compositae Sinica, 2015, 32(1): 117-124. doi: 10.13801/j.cnki.fhclxb.201501.009
Citation: YANG Zhiqiang, LIU Yong, TIAN Baohong, et al. Hot deformation and dynamic recrystallization of TiC(30vol%)/Cu-Al2O3 composites[J]. Acta Materiae Compositae Sinica, 2015, 32(1): 117-124. doi: 10.13801/j.cnki.fhclxb.201501.009

Hot deformation and dynamic recrystallization of TiC(30vol%)/Cu-Al2O3 composites

doi: 10.13801/j.cnki.fhclxb.201501.009
  • Received Date: 2013-12-06
  • Rev Recd Date: 2014-01-06
  • Publish Date: 2015-02-15
  • The TiC(30vol%)/Cu-Al2O3 composites were successfully prepared by vacuum thermal pressed-internal oxidation sintering process. The basic properties and microstructure of the composites were tested and observed. The hot compression deformation tests of TiC(30vol%)/Cu-Al2O3 composites were conducted at deformation temperature of 450-850 ℃, strain rate of 0.001-1 s-1 and deformation amount of 50% by Gleeble-1500D simulator. By analyzing and caculating the flow stress, constitutive equation and model of dynamic recrystallization critical strain were constructed. By the inflection point of work hardening rate-strain curves and the minimum value criterion of corresponding partial derivative curves, the function relationship between dynamic recrystallization critical strain and Zener-Hollomon parameter was constructed. The results show that the softening mechanism of dynamic recrystallization is a feature of true stress-true strain curves of TiC(30vol%)/Cu-Al2O3 composites, and the peak stress increases with the decrease of deformation temperature or the increase of strain rate. The calculating thermal deformation activation energy is 211.384 kJ/mol.

     

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      沈阳化工大学材料科学与工程学院 沈阳 110142

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