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- W4378902790 endingPage "4064" @default.
- W4378902790 startingPage "4064" @default.
- W4378902790 abstract "This work aims to perform a computational analysis on the influence that microstructure and porosity have on the elastic modulus of Ti-6Al-4V foams used in biomedical applications with different α/β-phase ratios. The work is divided into two analyses, first the influence that the α/β-phase ratio has and second the effects that porosity and α/β-phase ratio have on the elastic modulus. Two microstructures were analyzed: equiaxial α-phase grains + intergranular β-phase (microstructure A) and equiaxial β-phase grains + intergranular α-phase (microstructure B). The α/β-phase ratio was variated from 10 to 90% and the porosity from 29 to 56%. The simulations of the elastic modulus were carried out using finite element analysis (FEA) using ANSYS software v19.3. The results were compared with experimental data reported by our group and those found in the literature. The β-phase amount and porosity have a synergic effect on the elastic modulus, for example, when the foam has a porosity of 29 with 0% β-phase, and it has an elastic modulus of ≈55 GPa, but when the β-phase amount increases to 91%, the elastic modulus decreases as low as 38 GPa. The foams with 54% porosity have values smaller than 30 GPa for all the β-phase amounts." @default.
- W4378902790 created "2023-06-01" @default.
- W4378902790 creator A5004818431 @default.
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- W4378902790 creator A5049956955 @default.
- W4378902790 creator A5064497708 @default.
- W4378902790 creator A5089267281 @default.
- W4378902790 date "2023-05-30" @default.
- W4378902790 modified "2023-10-01" @default.
- W4378902790 title "Computational Study of the Influence of α/β-Phase Ratio and Porosity on the Elastic Modulus of Ti-Based Alloy Foams" @default.
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- W4378902790 doi "https://doi.org/10.3390/ma16114064" @default.
- W4378902790 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37297198" @default.
- W4378902790 hasPublicationYear "2023" @default.