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- W2387290460 abstract "Abstract To investigate the effect of fiber orientation on the effective elastic properties of short-fiber-reinforced metal matrix composites, the two-step mean-field homogenization procedures including the D-I/Reuss, M-T/Reuss, D-I/Reuss, M-T/Voigt and D-M/V-R models are introduced and the corresponding numerical implementations are detailed. Compared with the RVE based FE homogenization method, the two-step mean-field homogenization procedures: D-I/Reuss, M-T/Reuss, D-I/Reuss, M-T/Voigt and D-M/V-R models to predict the effective elastic properties of short-fiber-reinforced metal matrix composites are validated. The simulation results show that the effective elastic moduli E 22 and E 33 of short-fiber-reinforced metal matrix composites with the aligned fibers reach the minimums around θ = 60 ° and 30 ° , respectively, but not 90 ° or 0 ° , while the effective shear modulus G 23 reaches a maximum at θ = 45 ° and shows a symmetrical distribution. For short-fiber reinforced metal matrix composites with the planarly randomly distributed fibers, the effective elastic moduli E 22 and E 33 are close to those of short-fiber reinforced metal matrix composites with the aligned fibers presenting the orientation angle θ of 35 ° and 55 ° , respectively, but not 45 ° , while the effective shear modulus G 23 is close to those of short-fiber reinforced metal matrix composites reinforced by the aligned fibers with the orientation angles of both 20 ° and 70 ° ." @default.
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- W2387290460 date "2016-09-01" @default.
- W2387290460 modified "2023-10-18" @default.
- W2387290460 title "Numerical simulation on elastic properties of short-fiber-reinforced metal matrix composites: Effect of fiber orientation" @default.
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- W2387290460 doi "https://doi.org/10.1016/j.compstruct.2016.05.046" @default.
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