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Evaluating location specific strain rates, temperatures, and accumulated strains in friction welds through microstructure modeling

dc.contributor.authorAkram J.; Kalvala P.R.; Jindal V.; Misra M.
dc.date.accessioned2025-05-24T09:31:49Z
dc.description.abstractA microstructural simulation method is adopted to predict the location specific strain rates, temperatures, grain evolution, and accumulated strains in the Inconel 718 friction welds. Cellular automata based 2D microstructure model was developed for Inconel 718 alloy using theoretical aspects of dynamic recrystallization. Flow curves were simulated and compared with experimental results using hot deformation parameter obtained from literature work. Using validated model, simulations were performed for friction welds of Inconel 718 alloy generated at three rotational speed i.e., 1200, 1500, and 1500 RPM. Results showed the increase in strain rates with increasing rotational speed. These simulated strain rates were found to match with the analytical results. Temperature difference of 150 K was noticed from center to edge of the weld. At all the rotational speeds, the temperature was identical implying steady state temperature (0.89Tm) attainment. © 2017 The Authors
dc.identifier.doihttps://doi.org/10.1016/j.dt.2017.11.002
dc.identifier.urihttp://172.23.0.11:4000/handle/123456789/17442
dc.relation.ispartofseriesDefence Technology
dc.titleEvaluating location specific strain rates, temperatures, and accumulated strains in friction welds through microstructure modeling

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