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Part A: Materials Science

Mechanism of texture and microstructure evolution during warm rolling of Ti–6Al–4V alloy

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Pages 2562-2581 | Received 27 Mar 2018, Accepted 12 Jun 2018, Published online: 09 Jul 2018
 

ABSTRACT

Ti–6Al–4V (Ti64) plates were subjected to rolling at 600°C and 800°C, respectively, for reductions up to 90% reduction in thickness. The mechanism of texture and microstructure evolution during rolling was studied in the present study. Extension twins of coherent nature were observed in the samples rolled up to 50% of reduction. The deformation was relatively inhomogeneous in the samples rolled at 600°C compared to that at 800°C. Visco-plastic self-consistent (VPSC) simulation showed that relative activity of pyramidal <c+a> slip was higher during rolling at 800°C compared to that at 600°C. The average activity of slip systems per grain was less than five for the samples rolled at 600°C and this might be responsible for the strain heterogeneity in the large grains. Further, twinning activity was found to be limited to a true strain of 0.5, as supported by the microstructural observation. VPSC simulation also showed the presence of contraction twins in the samples which was further supported by X-ray texture measurement. Dominant basal texture was observed in the samples irrespective of the temperature of rolling.

Acknowledgements

The authors thank Prof. S. Suwas, Department of Materials Engineering, IISc Bangalore for conducting rolling of the samples and Prof. I. Samajdar, Department of Metallurgical Engineering and Materials Science, IIT Bombay for conducting EBSD measurements of the samples.

Disclosure statement

No potential conflict of interest was reported by the authors.

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