Integrated Engineering of Continuous-Discontinuous Long Fiber Reinforced Polymer Structures
- 1st Edition - November 22, 2019
- Latest edition
- Author: Thomas Böhlke
- Language: English
Discontinuous long fiber reinforced polymer structures with local continuous fiber reinforcements represent an important class of lightweight materials with broad design… Read more
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Discontinuous long fiber reinforced polymer structures with local continuous fiber reinforcements represent an important class of lightweight materials with broad design possibilities and diverse technical applications, e.g. in vehicle construction. However, in contrast to continuous fiber reinforced composites, extensively used in the aircraft industry, there is still a lack of integrated and experimentally proven concepts for manufacture, modeling, and dimensioning of combinations of discontinuously and continuously reinforced polymer structures. This is partly ascribed to the complexity of the manufacturing processes of discontinuously reinforced polymers, with heterogeneous, anisotropic, and nonlinear material and structural properties, but also to the resulting bonding problem of both material types. This book addresses these issues, including both continuous and discontinuous fiber processing strategies. Specific design strategies for advanced composite reinforcement strategies are provided, with an integrated and holistic approach taken for composites material selection, product design, and mechanical properties. Characterization, simulation, technology, design, future research, and implementation directions are also included. Especially in the field of application of three-dimensional load-bearing structures, this book provides an excellent foundation for the enhancement of scientific methods and the education of engineers who need an interdisciplinary understanding of process and material techniques, as well as simulation and product development methods.
1. Introduction to Continuous–Discontinuous Fiber-Reinforced Polymer Composites2. Manufacturing of CoDiCoFRP3. Characterization of CoDiCoFRP4. Simulation of Sheet Molding Compound (SMC) and Long Fiber- Reinforced Thermoplastics (LFTP)5. Designing CoDiCoFRP Structures6. Compression Molding of the Demonstrator Structure
- Edition: 1
- Latest edition
- Published: November 22, 2019
- Language: English
TB
Thomas Böhlke
Thomas Böhlke is Professor and Chair of Continuum Mechanics at the Karlsruhe Institute of Technology (KIT), Germany. He previously held professorial positions at the University of Kassel and at the Otto-von-Guericke-University, Magdeburg, Germany.
Read Integrated Engineering of Continuous-Discontinuous Long Fiber Reinforced Polymer Structures on ScienceDirect