Characterization And Modeling Of Fiber Matrix Interfaces Of A Glass Fiber Reinforced Sheet Molding Compound


Characterization And Modeling Of Fiber Matrix Interfaces Of A Glass Fiber Reinforced Sheet Molding Compound
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Characterization And Modeling Of Fiber Matrix Interfaces Of A Glass Fiber Reinforced Sheet Molding Compound


Characterization And Modeling Of Fiber Matrix Interfaces Of A Glass Fiber Reinforced Sheet Molding Compound
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Author : Benedikt Rohrmüller
language : en
Publisher:
Release Date : 2023

Characterization And Modeling Of Fiber Matrix Interfaces Of A Glass Fiber Reinforced Sheet Molding Compound written by Benedikt Rohrmüller and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2023 with categories.




Biaxial Characterization And Mean Field Based Damage Modeling Of Sheet Molding Compound Composites


Biaxial Characterization And Mean Field Based Damage Modeling Of Sheet Molding Compound Composites
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Author : Schemmann, Malte
language : en
Publisher: KIT Scientific Publishing
Release Date : 2018-11-09

Biaxial Characterization And Mean Field Based Damage Modeling Of Sheet Molding Compound Composites written by Schemmann, Malte and has been published by KIT Scientific Publishing this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-11-09 with categories.




Thermomechanical Modeling And Experimental Characterization Of Sheet Molding Compound Composites


Thermomechanical Modeling And Experimental Characterization Of Sheet Molding Compound Composites
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Author : Lang, Juliane
language : en
Publisher: KIT Scientific Publishing
Release Date : 2023-06-28

Thermomechanical Modeling And Experimental Characterization Of Sheet Molding Compound Composites written by Lang, Juliane and has been published by KIT Scientific Publishing this book supported file pdf, txt, epub, kindle and other format this book has been release on 2023-06-28 with categories.


The aim of this work is to model and experimentally characterize the anisotropic material behavior of SMC composites on the macroscale with consideration of the microstructure. Temperature-dependent thermoelastic behavior and failure behavior are modeled and the corresponding material properties are determined experimentally. Additionally, experimental biaxial damage investigations are performed. A parameter identification merges modeling and experiments and validates the models.



Thermomechanical Mean Field Modeling And Experimental Characterization Of Long Fiber Reinforced Sheet Molding Compound Composites


Thermomechanical Mean Field Modeling And Experimental Characterization Of Long Fiber Reinforced Sheet Molding Compound Composites
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Author : Kehrer, Maria Loredana
language : en
Publisher: KIT Scientific Publishing
Release Date : 2019-06-13

Thermomechanical Mean Field Modeling And Experimental Characterization Of Long Fiber Reinforced Sheet Molding Compound Composites written by Kehrer, Maria Loredana and has been published by KIT Scientific Publishing this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-06-13 with Technology & Engineering categories.


A discontinuous fiber-reinforced thermoset material produced by the Sheet Molding Compound process is investigated. Due to the process-related fiber orientation distribution, a composite with an anisotropic microstructure is created which crucially affects the mechanical properties. The central objectives are the modeling of the thermoelastic behavior of the composite accounting for the underlying microstructure, and the experimental characterization of the pure resin and the composite material.



Multi Scale Continuum Mechanics Modelling Of Fibre Reinforced Polymer Composites


Multi Scale Continuum Mechanics Modelling Of Fibre Reinforced Polymer Composites
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Author : Wim Van Paepegem
language : en
Publisher: Woodhead Publishing
Release Date : 2020-11-25

Multi Scale Continuum Mechanics Modelling Of Fibre Reinforced Polymer Composites written by Wim Van Paepegem and has been published by Woodhead Publishing this book supported file pdf, txt, epub, kindle and other format this book has been release on 2020-11-25 with Technology & Engineering categories.


Multi-scale modelling of composites is a very relevant topic in composites science. This is illustrated by the numerous sessions in the recent European and International Conferences on Composite Materials, but also by the fast developments in multi-scale modelling software tools, developed by large industrial players such as Siemens (Virtual Material Characterization toolkit and MultiMechanics virtual testing software), MSC/e-Xstream (Digimat software), Simulia (micromechanics plug-in in Abaqus), HyperSizer (Multi-scale design of composites), Altair (Altair Multiscale Designer) This book is intended to be an ideal reference on the latest advances in multi-scale modelling of fibre-reinforced polymer composites, that is accessible for both (young) researchers and end users of modelling software. We target three main groups: This book aims at a complete introduction and overview of the state-of-the-art in multi-scale modelling of composites in three axes: • ranging from prediction of homogenized elastic properties to nonlinear material behaviour • ranging from geometrical models for random packing of unidirectional fibres over meso-scale geometries for textile composites to orientation tensors for short fibre composites • ranging from damage modelling of unidirectionally reinforced composites over textile composites to short fibre-reinforced composites The book covers the three most important scales in multi-scale modelling of composites: (i) micro-scale, (ii) meso-scale and (iii) macro-scale. The nano-scale and related atomistic and molecular modelling approaches are deliberately excluded, since the book wants to focus on continuum mechanics and there are already a lot of dedicated books about polymer nanocomposites. A strong focus is put on physics-based damage modelling, in the sense that the chapters devote attention to modelling the different damage mechanisms (matrix cracking, fibre/matrix debonding, delamination, fibre fracture,...) in such a way that the underlying physics of the initiation and growth of these damage modes is respected. The book also gives room to not only discuss the finite element based approaches for multi-scale modelling, but also much faster methods that are popular in industrial software, such as Mean Field Homogenization methods (based on Mori-Tanaka and Eshelby solutions) and variational methods (shear lag theory and more advanced theories). Since the book targets a wide audience, the focus is put on the most common numerical approaches that are used in multi-scale modelling. Very specialized numerical methods like peridynamics modelling, Material Point Method, eXtended Finite Element Method (XFEM), isogeometric analysis, SPH (Smoothed Particle Hydrodynamics),... are excluded. Outline of the book The book is divided in three large parts, well balanced with each a similar number of chapters:



Interfacial Bonding Characteristics In Natural Fiber Reinforced Polymer Composites


Interfacial Bonding Characteristics In Natural Fiber Reinforced Polymer Composites
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Author : Senthilkumar Krishnasamy
language : en
Publisher: Springer Nature
Release Date : 2024-01-17

Interfacial Bonding Characteristics In Natural Fiber Reinforced Polymer Composites written by Senthilkumar Krishnasamy and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2024-01-17 with Technology & Engineering categories.


This book provides a general overview of the importance of fibre-matrix interfacial bonding characteristics in natural fibre-based composites to obtain optimal material properties for a specific application. Composites materials are prepared by combining fibres and polymers to achieve superior materials properties than those of the individual components. Composite materials are used to produce lightweight components with increased stiffness and strength; their properties can also be tailored for any specific applications. The glass fibre reinforced composites dominate 95% of the thermoplastic and thermoset-based composites. However, the natural fibre reinforced composites can give competition to the glass fibres due to their advantages such as biodegradability, low density, low cost, and good mechanical properties. This book looks into biocomposites and its important aspect of optimization of materials’ performance by fine-tuning the fibre-matrix bonding characteristics. The chapters in the book look at different plant fibres such as kenaf, pineapple leaf, jute, date palm, luffa, cotton, hemp, wood, bamboo, flax, and straw and the different approaches to enhance the fibre-matrix interfacial bonding through physical and/or chemical treatment methods. It demonstrates that the nature of fibre-matrix bonding has a significant effect on the properties such as tensile, flexural, impact, inter-laminar shear strength, moisture absorption, thickness swelling, thermal, chemical, damping, creep, and fatigue. Its content appeals to academics, students, researcher, and scientist who are working in the field to produce biodegradable and recyclable materials in the composite industry.



Scientific And Technical Aerospace Reports


Scientific And Technical Aerospace Reports
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Author :
language : en
Publisher:
Release Date : 1992-07

Scientific And Technical Aerospace Reports written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1992-07 with Aeronautics categories.




Applied Mechanics Reviews


Applied Mechanics Reviews
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Author :
language : en
Publisher:
Release Date : 1948

Applied Mechanics Reviews written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1948 with Mechanics, Applied categories.




Thermomechanical Mean Field Modeling And Experimental Characterization Of Long Fiber Reinforced Sheet Molding Compound Composites


Thermomechanical Mean Field Modeling And Experimental Characterization Of Long Fiber Reinforced Sheet Molding Compound Composites
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Author : Maria Loredana Kehrer
language : en
Publisher:
Release Date : 2020-10-09

Thermomechanical Mean Field Modeling And Experimental Characterization Of Long Fiber Reinforced Sheet Molding Compound Composites written by Maria Loredana Kehrer and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2020-10-09 with Technology & Engineering categories.


A discontinuous fiber-reinforced thermoset material produced by the Sheet Molding Compound process is investigated. Due to the process-related fiber orientation distribution, a composite with an anisotropic microstructure is created which crucially affects the mechanical properties. The central objectives are the modeling of the thermoelastic behavior of the composite accounting for the underlying microstructure, and the experimental characterization of the pure resin and the composite material. This work was published by Saint Philip Street Press pursuant to a Creative Commons license permitting commercial use. All rights not granted by the work's license are retained by the author or authors.



Fiber Reinforced Composite Materials


Fiber Reinforced Composite Materials
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Author : V. Tuninetti
language : en
Publisher: Springer Nature
Release Date : 2023-05-20

Fiber Reinforced Composite Materials written by V. Tuninetti and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2023-05-20 with Technology & Engineering categories.


This book provides a comprehensive overview of the current progress in fiber-reinforced plastics (FRP), covering manufacturing, mechanical behavior, and resistance performance. It includes the elastic and damage behavior of unidirectional FRP, and highlights the improvements achieved by adding multiwall carbon nanotubes. The material resistance is assessed through fatigue response, local behavior, local properties, and failure mechanisms, including crack density and microcrack propagation behavior. The book also explores the degradation of macroscopic mechanical properties such as elastic modulus and compressive strength versus plastic strains. Additionally, it focuses on the progress made in out-of-plane composite characterization and modeling response for simulations of critical mechanical parts currently used in different industries, thanks to advances in manufacturing techniques that allow for the production of increasingly complex and thicker geometries.