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Titlebook: IUTAM Symposium on Transformation Problems in Composite and Active Materials; Proceedings of the I Yehia A. Bahei-El-Din,George J. Dvorak C

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Micromechanical Analysis of Inelastic Fibrous Laminatesmited to uniform in-plane stresses and out-of-plane normal stress, and to uniform changes in temperature. The objective is to predict the overall strains and the local fields in the constituents. This has been achieved by analysis of the laminates on two interacting structural scales, a microscopic
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Thermomechanical Modeling of Shape Memory Alloys and Applicationsthe thermodynamics of irreversible processes. This model is efficient for describing the behavior of “.” structures as a bronchial, a tentacle element and an prosthesis hybrid structure made of Ti Ni SMA wires embedded in a resin epoxy matrix.
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On the Design of Hydrophones made as 1–3 Piezoelectricsormance characteristics we focus is the hydrostatic charge coefficient .. The piezocomposite consists of piezoelectric rods embedded in an optimal polymer matrix. In the first approach, we allow the material parameters of the polymer matrix to be free design variables and we find the polymer paramet
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Thermal Fracture and Thermal Shock Resistance of Functionally Graded Materialshat the shear modulus of the material decreases hyperbolically with the higher value occurring at the surface exposed to the thermal shock and that thermal conductivity varies exponentially. It is shown that the maximum tensile thermal stress induced in the strip is substantially reduced by the pres
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Micromechanics and Nonlocal Effects in Graded Random Structure Matrix Compositesstically inhomogeneous random set of ellipsoidal inclusions, when the concentration of the inclusions is a function of the coordinates and the meso-stress boundary condition are nonuniform. The micromechanical approach is based on the generalization of the “multiparticle effective field” method (MEF
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