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Mechanics of Microstructured Solids: Cellular Materials, Fibre Reinforced Solids and Soft Tissues (2009)

Mechanics of Microstructured Solids: Cellular Materials, Fibre Reinforced Solids and Soft Tissues (2009)

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Class-Jump Phenomenon for Physical Symmetries in Bi-dimensional Space.- Analysis and Optimisation of Interfaces for Multi-material Structures.- One-Dimensional Microstructure Dynamics.- Strain Localization in Polyurethane Foams: Experiments and Theoretical Model.- A Finite Element Approach of the Behaviour of Woven Materials at Microscopic Scale.- Nonlinear Problems of Fibre Reinforced Soft Shells.- A 3D Stochastic Model of the Cell-Wall Interface during the Rolling.- Plane Waves in Linear Thermoelastic Porous Solids.- Viscoelastic Modeling of Brain Tissue: A Fractional Calculus-Based Approach.- Modelling of the Mechanical Behaviour of Regular Metallic Hollow-Sphere Packings under Compressive Loads.- Modelling the Smooth Muscle Tissue as a Dissipative Microstructured Material.- Mechanical Response of Helically Wound Fiber-Reinforced Incompressible Non-linearly Elastic Pipes.- Essentially Nonlinear Strain Waves in Solids with Complex Internal Structure.

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Class-Jump Phenomenon for Physical Symmetries in Bi-dimensional Space.- Analysis and Optimisation of Interfaces for Multi-material Structures.- One-Dimensional Microstructure Dynamics.- Strain Localization in Polyurethane Foams: Experiments and Theoretical Model.- A Finite Element Approach of the Behaviour of Woven Materials at Microscopic Scale.- Nonlinear Problems of Fibre Reinforced Soft Shells.- A 3D Stochastic Model of the Cell-Wall Interface during the Rolling.- Plane Waves in Linear Thermoelastic Porous Solids.- Viscoelastic Modeling of Brain Tissue: A Fractional Calculus-Based Approach.- Modelling of the Mechanical Behaviour of Regular Metallic Hollow-Sphere Packings under Compressive Loads.- Modelling the Smooth Muscle Tissue as a Dissipative Microstructured Material.- Mechanical Response of Helically Wound Fiber-Reinforced Incompressible Non-linearly Elastic Pipes.- Essentially Nonlinear Strain Waves in Solids with Complex Internal Structure.

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