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Chapter 1. Fatigue crack growth in fiber-reinforced polymer composite laminate using higher-order XFEM.-  Chapter 2. An Eshelby-Mori-Tanaka Based Micromechanical Model For Piezoelectric Polymer Composites With Spatially And Randomly-Oriented Inclusions In Orthotropic Matrix.- Chapter 3. Phase-field modeling of crack propagation merging and nucleation.- Chapter 4. Comparison of damage prediction in a laminated composite plate using associative and non-assocoative damage flow rules.- Chapter 5. Investigation on In-situ Bone Temperature Induced During End-milling Process: A Study Intended for Bone Grafting.- Chapter 6. Comparative Analysis of Blast Loading Response of UHMWPE and Aramid Composites using Explicit Dynamics Approach.- Chapter 7. Low velocity impact response of glare laminates under multiple spherical impacts.- Chapter 8. Finite Element Analysis of Pelvic Stability to Predict Post Trapdoor Risk During Bone Grafting Procedure.- Chapter 9. Finite element analysis of functio

Recent Advances in Mechanics of Functional Materials and Structures

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Chapter 1. Fatigue crack growth in fiber-reinforced polymer composite laminate using higher-order XFEM.-  Chapter 2. An Eshelby-Mori-Tanaka Based Micromechanical Model... Read more

    Publisher: Springer
    Publication Date: 8/24/2024
    ISBN13: 9789819959181, 978-9819959181
    ISBN10: 9819959187

    Non Fiction , Technology, Engineering & Agriculture , Education

    Description

    Chapter 1. Fatigue crack growth in fiber-reinforced polymer composite laminate using higher-order XFEM.-  Chapter 2. An Eshelby-Mori-Tanaka Based Micromechanical Model For Piezoelectric Polymer Composites With Spatially And Randomly-Oriented Inclusions In Orthotropic Matrix.- Chapter 3. Phase-field modeling of crack propagation merging and nucleation.- Chapter 4. Comparison of damage prediction in a laminated composite plate using associative and non-assocoative damage flow rules.- Chapter 5. Investigation on In-situ Bone Temperature Induced During End-milling Process: A Study Intended for Bone Grafting.- Chapter 6. Comparative Analysis of Blast Loading Response of UHMWPE and Aramid Composites using Explicit Dynamics Approach.- Chapter 7. Low velocity impact response of glare laminates under multiple spherical impacts.- Chapter 8. Finite Element Analysis of Pelvic Stability to Predict Post Trapdoor Risk During Bone Grafting Procedure.- Chapter 9. Finite element analysis of functio

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