2019
DOI: 10.1007/s00170-019-03723-0
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A rapid method for grain growth of Ti6Al4V alloy and its machinability

Abstract: A rapid method for grain growth of Ti6Al4V alloys induced by electropulsing treatment (EPT) was proposed in this study. The results show that the initial β grains could reach about 0.5 mm after EPT of 20 seconds, and the dramatic grain growth rate is attributed to the high atom diffusion and large driving force caused by the thermal and athermal effects of EPT. Grains stop coarsening as the average grain size reaches about 2.0 mm, even though the electropulsing duration is as long as 15 minutes. Driving force … Show more

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Cited by 6 publications
(2 citation statements)
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“…The reason for grain‐boundary migration is the diffusion of atoms around grain boundaries. [ 35 ] In general, in a 3D stereological model, the diffusion direction for each atom is disorder and random, resulting in non‐smooth and nonlinear grain boundaries. Here, to quantify the complexity of grain‐boundary migration by introducing fractal dimension, ψ, which is widely applied in computer science, [ 36,37 ] geography science, [ 38 ] and metal materials.…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…The reason for grain‐boundary migration is the diffusion of atoms around grain boundaries. [ 35 ] In general, in a 3D stereological model, the diffusion direction for each atom is disorder and random, resulting in non‐smooth and nonlinear grain boundaries. Here, to quantify the complexity of grain‐boundary migration by introducing fractal dimension, ψ, which is widely applied in computer science, [ 36,37 ] geography science, [ 38 ] and metal materials.…”
Section: Resultsmentioning
confidence: 99%
“…The reason for grain-boundary migration is the diffusion of atoms around grain boundaries. [35] In general, in a 3D stereological model, the diffusion direction for each atom is disorder and random, resulting in non-smooth and nonlinear grain boundaries.…”
Section: Grain Shape and Fractal Dimensionmentioning
confidence: 99%