A TiB/Ti-6Al-4V composite reinforced with ultra-fine TiB whiskers (UF-TiB) was prepared by the powder metallurgy method. High temperature compression tests were carried out to study the hot deformation behavior of the UF-TiB/Ti-6Al-4V composite. The compressive deformation was performed in the temperature range of 900â»1200 °C and the strain rate range of 0.001â»10 s(-1). The results showed that stable flow occurred at the condition of 900â»1200 °C/0.001â»0.01 s(-1). The optimum working condition was 900 °C/0.001 s(-1), with the deformation mechanism of dynamic recrystallization (DRX). Instable flow occurred when the strain rate was higher than 0.01 s(-1), where the failure modes included adiabatic shear deformation, whisker breakage and whisker/matrix debonding. The deformability of the UF-TiB/Ti-6Al-4V composite was much better than the traditional casted and the pressed + sintered TiB/Ti-6Al-4V composites, which are typically reinforced with coarse-grained TiB whiskers. The high deformability was primarily attributed to the ultra-fine reinforcements, which could coordinate the deformation more effectively. In addition, a fine matrix microstructure also had a positive effect on deformability because the fine matrix microstructure could improve the grain boundary sliding.
High Temperature Deformation Behavior of In-Situ Synthesized Titanium-Based Composite Reinforced with Ultra-Fine TiB Whiskers.
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作者:Xu Rongjun, Liu Bin, Liu Yong, Cao Yuankui, Guo Wenmin, Nie Yan, Liu Shifeng
| 期刊: | Materials | 影响因子: | 3.200 |
| 时间: | 2018 | 起止号: | 2018 Oct 1; 11(10):1863 |
| doi: | 10.3390/ma11101863 | ||
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