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- W3080472762 abstract "Abstract In the present work, the effect of microstructure and crystallographic texture on the mechanical properties of Ti6Al4V alloy was investigated. A rolled plate of Ti6Al4V was heat-treated to produce three different typical microstructures including equiaxed, bimodal, and fully lamellar microstructures. The results showed that the samples with equiaxed and fully lamellar microstructure have relatively strong α texture due to the presence of the α phase with an individual morphology. The main texture of equiaxed microstructure was [ 0001 ] ∥ ND with a maximum intensity of 1.42 multiples of random distribution (mrd). By contrast, the presence of two morphological features of the α phase in the sample of bimodal microstructure caused a decrease in texture intensity where the main texture was [ 10 1 ‾ 4 ] ∥ ND with a maximum intensity of 1.15 mrd. The hardness measurement showed that the equiaxed microstructure had the lowest hardness values ranging from 324 HV to 366 HV whereas the greatest hardness value was approximately equal to 400 HV obtained in samples with fully lamellar microstructure. Furthermore, the results showed that the α grain size has a greater effect on hardness values rather than texture. The hardness of equiaxed sample increased from 324 HV (for RD-TD plane with an average α grain size of 10.7 μm) to 366 HV (for RD-ND plane with an average α grain size of 9.6 μm). The hardness measurement of sample with bimodal microstructure revealed that the presence of [ 11 2 ‾ 0 ] ∥ TD led to higher hardness (398 HV) than that of [ 10 1 ‾ 0 ] ∥ RD texture (373 HV)." @default.
- W3080472762 created "2020-09-01" @default.
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- W3080472762 date "2020-12-01" @default.
- W3080472762 modified "2023-09-25" @default.
- W3080472762 title "Comparative investigation of microstructure and crystallographic texture effect on Ti6Al4V alloy mechanical properties" @default.
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- W3080472762 doi "https://doi.org/10.1016/j.matchemphys.2020.123725" @default.
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