Normally the cause of failure, stress concentrations are introduced in laminated plates in the forms of circular holes, elliptical openings and straight cracks. These forms of cutouts have many practical applications, and are familiar to most engineers. This book studies all the subjects closely related to the problem of stress concentrations in laminated composites All the models are verified with many experimental results. This comprehensive study gives the readers an in-depth and thorough understanding of the problem of stress concentrations in composites.
Normally the cause of failure, stress concentrations are introduced in laminated plates in the forms of circular holes, elliptical openings and straight cracks. These forms of cutouts have many practical applications, and are familiar to most engineers. This book studies all the subjects closely related to the problem of stress concentrations in laminated composites All the models are verified with many experimental results. This comprehensive study gives the readers an in-depth and thorough understanding of the problem of stress concentrations in composites.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
BACKGROUND. Introduction to Composite Materials. Test Methods. Failure Criteria. II. FINITE-WIDTH SOLUTIONS. Finite-Width Correction Factor for Anisotropic Plate. Strain and Stress Concentrations. III. LAMINATE FAILURE MODELS (ANALYTICAL). Approximate Stress Analyses and Stress Failure Models. Experiment and Modified Failure Models. IV. LAMINA FAILURE MODELS (ANALYTICAL). Point Strength and Minimum Strength Models. Lamina-Based Fiber Failure Criteria and Effective Stress Failure Models. Notched Strength of Thermoplastic Composites. Shear Loading of Composites Containing an Opening. Multiaxial Loading of Multidirectional Laminates. Mixed-Mode Fracture of Unidirectional and Off-Axis Laminates. Mixed-Mode Fracture of Unidirectional and Off-Axis Laminates. Correlation of Damage Mechanisms and Characteristic Lengths. Progressive Failure Models (Numerical). A Progressive Failure Model for Laminates with Cutouts. Damage Accumulation, and Accumulation due to Compressive Loading. VI. DESIGN METHODOLOGY. Design of Composite Laminates by a Ranking Method. Optimal Design with an Iterative Method. Mechanical Response and Design of Laminates with a Reinforcement.
BACKGROUND. Introduction to Composite Materials. Test Methods. Failure Criteria. II. FINITE-WIDTH SOLUTIONS. Finite-Width Correction Factor for Anisotropic Plate. Strain and Stress Concentrations. III. LAMINATE FAILURE MODELS (ANALYTICAL). Approximate Stress Analyses and Stress Failure Models. Experiment and Modified Failure Models. IV. LAMINA FAILURE MODELS (ANALYTICAL). Point Strength and Minimum Strength Models. Lamina-Based Fiber Failure Criteria and Effective Stress Failure Models. Notched Strength of Thermoplastic Composites. Shear Loading of Composites Containing an Opening. Multiaxial Loading of Multidirectional Laminates. Mixed-Mode Fracture of Unidirectional and Off-Axis Laminates. Mixed-Mode Fracture of Unidirectional and Off-Axis Laminates. Correlation of Damage Mechanisms and Characteristic Lengths. Progressive Failure Models (Numerical). A Progressive Failure Model for Laminates with Cutouts. Damage Accumulation, and Accumulation due to Compressive Loading. VI. DESIGN METHODOLOGY. Design of Composite Laminates by a Ranking Method. Optimal Design with an Iterative Method. Mechanical Response and Design of Laminates with a Reinforcement.
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