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- W3156445708 abstract "In addition to the great merits of producing three-dimensional complex components from metallic powders in additive manufactured parts, the microstructural features can be tailored by the intrinsic heat treatment (IHT), i.e., cyclic re-heating without any additional post-treatment of the printed samples. Here we report that the microstructural configurations can be widely manipulated in an additive manufactured Ti-5Al-5Mo-5V-1Cr-1Fe (Ti-55511) near β titanium alloy, with an emphasis on the effect of IHT on the in-situ precipitation of α phase. The typical as-printed samples consist of prior-β grains, coarse primary α (αI) colony and nanoscale secondary α (αII) laths. Based on automatic quantitative image analysis, the increase of substrate temperature has a remarkable impact on accelerating the precipitation of nanoscale αII laths, while suppressing the precipitation kinetics of the primary α colony, and the corresponding volume fraction of αII laths increases from only 2% to more than 40%, resulting in a tensile strength increment from 900 MPa to 1200 MPa. The enhanced strength derives from those extremely fine αII laths in terms of boundary strengthening. The findings in this work provide a strategy of strengthening additively manufactured components by taking advantage of one step intrinsic heat treatment." @default.
- W3156445708 created "2021-04-26" @default.
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- W3156445708 date "2021-05-01" @default.
- W3156445708 modified "2023-10-16" @default.
- W3156445708 title "Additive manufacturing of high strength near β titanium alloy Ti-55511 by engineering nanoscale secondary α laths via in-situ heat treatment" @default.
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- W3156445708 doi "https://doi.org/10.1016/j.msea.2021.141245" @default.
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