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- W2016089070 abstract "Abstract This paper deals with the effective constitutive behavior of ductile metals reinforced by aligned spheroidal inclusions with linear-elastic properties. For simplicity, both the matrix and the inclusions are assumed to be incompressible and isotropic, so that the overall constitutive behavior of the metal-matrix composites is incompressible and transversely isotropic. Based on a recently proposed variational method for estimating the effective behavior of nonlinear composites, results are obtained for the initial yield surfaces and overall stress-strain relations in terms of the three essentially distinct loading modes for this class of composites : Axisymmetric tension (relative to the symmetry axis of the inclusions), longitudinal shear (along the symmetry axis) and transverse shear (perpendicular to the symmetry axis). It is found that particle shape has a significant effect on the effective response of the composites, and that this effect is markedly different for the three loading modes. For the axisymmetric mode, oblate and prolate shapes have the largest strengthening effects ; for the transverse mode, oblate shapes are most effective ; and for the longitudinal mode, nearly spherical shapes are best. Particle stiffness also has a strong effect on the initial yielding behavior of the composites, which is magnified for the more severe aspect ratios. On the other hand, the stiffness of the particles does not seem to significantly affect the stress-strain behavior of the composites for strains greater than about five times the yield value." @default.
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- W2016089070 title "The effect of particle shape and stiffness on the constitutive behavior of metal-matrix composites" @default.
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- W2016089070 doi "https://doi.org/10.1016/0020-7683(93)90109-k" @default.
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