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Titlebook: IUTAM Symposium on Micromechanics of Plasticity and Damage of Multiphase Materials; Proceedings of the I André Pineau,André Zaoui Conferenc

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Constitutive Equations of Plastic Anisotropic Composite Mediumlastic-plastic behavior is much more difficult. When at least one of the phases deforms plastically, its local properties depend on the deformation history. This creates a major obstacle in evaluation of local fields. They also depend on the deformation history and so does the relationship between the stress and strain averages.
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Mechanical Behaviour of Multiphase Materials. Numerical Simulations and Experimental Comparisons considered: experimental, theoretical or numerical. Due to a combination of difficulties (the heterogeneity in strain repartition, the complexity of geometrical relationships between the different phases), this problem is far from being totally solved at the present time.
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0925-0042 eptember 1995. The Symposium was attended by 83 persons from 18 countries. In addition 17 young French students attended the meeting. During the 4 day meeting, a total of 55 papers were presented, including 24 papers in the poster sessions. The meeting was divided into 7 oral and 3 poster sessions.
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Conference proceedings 1996995. The Symposium was attended by 83 persons from 18 countries. In addition 17 young French students attended the meeting. During the 4 day meeting, a total of 55 papers were presented, including 24 papers in the poster sessions. The meeting was divided into 7 oral and 3 poster sessions. The 7 oral
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Self-Consistent Modelling of Elastic-Viscoplastic Multiphase Materialsn can be specified for the case of rate-dependent elastic-plastic polycrystals and the classically associated constitutive equations. It is shown that the merits of the proposed formulation are saved at the expense of limited complication. A simple application is given as an illustration of the tractability of the method.
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On Strain-Rate Sensitivity of Metal Matrices Reinforced with Ceramic Particlesent and strain rate sensitivity of the matrix. A simple constitutive expression is obtained which allows one to predict readily the rate-dependent plastic flow behavior of the composite. Comparison between the model predictions and experimental measurements for the strain rate dependence of an A1/A1.O. composite shows good agreement.
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Pseudoplasticity of Fibrous Composite Materials: Inelastic Response of Laminates with Interfacial Deply. Finally, transformation strain analysis of a laminated plate is developed for derivation of governing equations for incremental evaluation of the local fields along a given overall loading path. Applications indicate that the decohesion process may generate overall response similar to that of an elastic-plastic laminate.
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