Multi Field Modeling And Simulation Of Fiber Reinforced Polymers

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Multi-field modeling and simulation of fiber-reinforced polymers

Author : Schulte, Jonathan
Publisher : KIT Scientific Publishing
Page : 176 pages
File Size : 49,9 Mb
Release : 2023-03-27
Category : Technology & Engineering
ISBN : 9783731512516

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Multi-field modeling and simulation of fiber-reinforced polymers by Schulte, Jonathan Pdf

This work proposes a new numerical approach for analyzing the behavior of fiber-reinforced materials, which have gained popularity in various applications. The approach combines theories and methods to model the fracture behavior of the polymeric matrix and the embedded fibers separately, and includes a modified plasticity model that considers the temperature-dependent growth of voids. Tests are conducted to explore different types and sequences of failure in long fiber-reinforced polymers.

Multiscale Modeling and Simulation of Composite Materials and Structures

Author : Young Kwon,David H. Allen,Ramesh R. Talreja
Publisher : Springer Science & Business Media
Page : 634 pages
File Size : 48,8 Mb
Release : 2007-12-04
Category : Technology & Engineering
ISBN : 9780387363189

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Multiscale Modeling and Simulation of Composite Materials and Structures by Young Kwon,David H. Allen,Ramesh R. Talreja Pdf

This book presents the state-of-the-art in multiscale modeling and simulation techniques for composite materials and structures. It focuses on the structural and functional properties of engineering composites and the sustainable high performance of components and structures. The multiscale techniques can be also applied to nanocomposites which are important application areas in nanotechnology. There are few books available on this topic.

Multi-Scale Continuum Mechanics Modelling of Fibre-Reinforced Polymer Composites

Author : Wim Van Paepegem
Publisher : Woodhead Publishing
Page : 766 pages
File Size : 43,5 Mb
Release : 2020-11-25
Category : Technology & Engineering
ISBN : 9780128189856

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Multi-Scale Continuum Mechanics Modelling of Fibre-Reinforced Polymer Composites by Wim Van Paepegem Pdf

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:

Flows in Polymers, Reinforced Polymers and Composites

Author : Christophe Binetruy,Francisco Chinesta,Roland Keunings
Publisher : Springer
Page : 151 pages
File Size : 54,9 Mb
Release : 2015-03-30
Category : Technology & Engineering
ISBN : 9783319167572

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Flows in Polymers, Reinforced Polymers and Composites by Christophe Binetruy,Francisco Chinesta,Roland Keunings Pdf

This book gives a detailed and practical introduction to complex flows of polymers and reinforced polymers as well as the flow of simple fluids in complex microstructures. Over the last decades, an increasing number of functional and structural parts, made so far with metals, has been progressively reengineered by replacing metallic materials by polymers, reinforced polymers and composites. The motivation for this substitution may be the weight reduction, the simpler, cheaper or faster forming process, or the ability to exploit additional functionalities. The present Brief surveys modern developments related to the multi-scale modeling and simulation of polymers, reinforced polymers, that involve a flowing microstructure and continuous fiber-reinforced composites, wherein the fluid flows inside a nearly stationary multi-scale microstructure. These developments concern both multi-scale modeling, defining bridges between the micro and macro scales - with special emphasis on the mesoscopic scale at which kinetic theory descriptions apply and advanced simulation techniques able to address efficiently the ever more complex and detailed models defined at different scales. This book is addressed to students (Master and doctoral levels), researchers and professionals interested in computational rheology and material forming processes involving polymers, reinforced polymers and composites. It provides a unique coverage of the state of the art in these multi-disciplinary fields.

Inverse dynamics of underactuated flexible mechanical systems governed by quasi-linear hyperbolic partial differential equations

Author : Ströhle, Timo
Publisher : KIT Scientific Publishing
Page : 174 pages
File Size : 44,9 Mb
Release : 2024-02-26
Category : Electronic
ISBN : 9783731513360

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Inverse dynamics of underactuated flexible mechanical systems governed by quasi-linear hyperbolic partial differential equations by Ströhle, Timo Pdf

This work is about the inverse dynamics of underactuated flexible mechanical systems governed by quasi-linear hyperbolic partial differential equations subjected to time-varying Dirichlet boundary conditions that are enforced by unknown, spatially disjunct, hence non-collocated Neumann boundary conditions.

EAS Elements for Solid Mechanics - Mesh Distortion Insensitive and Hourglassing-Free Formulations with Increased Robustness

Author : Pfefferkorn, Robin
Publisher : KIT Scientific Publishing
Page : 218 pages
File Size : 54,8 Mb
Release : 2023-04-04
Category : Science
ISBN : 9783731512714

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EAS Elements for Solid Mechanics - Mesh Distortion Insensitive and Hourglassing-Free Formulations with Increased Robustness by Pfefferkorn, Robin Pdf

Proposed in the early 1990s, the enhanced assumed strain (EAS) method is one of the probably most successful mixed finite element methods for solid mechanics. This cumulative dissertation gives a comprehensive overview of previous publications on that method and covers recent improvements for EAS elements. In particular, we describe three key issues of standard EAS elements and develop corresponding solutions.

Mechanics of Particle- and Fiber-Reinforced Polymer Nanocomposites

Author : Sumit Sharma
Publisher : John Wiley & Sons
Page : 320 pages
File Size : 45,8 Mb
Release : 2021-02-22
Category : Technology & Engineering
ISBN : 9781119653639

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Mechanics of Particle- and Fiber-Reinforced Polymer Nanocomposites by Sumit Sharma Pdf

Learn to model your own problems for predicting the properties of polymer-based composites Mechanics of Particle- and Fiber-Reinforced Polymer Nanocomposites: Nanoscale to Continuum Simulations provides readers with a thorough and up-to-date overview of nano, micro, and continuum approaches for the multiscale modeling of polymer-based composites. Covering nanocomposite development, theoretical models, and common simulation methods, the text includes a variety of case studies and scripting tutorials that enable readers to apply and further develop the supplied simulations. The book describes the foundations of molecular dynamics and continuum mechanics methods, guides readers through the basic steps required for multiscale modeling of any material, and correlates the results between the experimental and theoretical work performed. Focused primarily on nanocomposites, the methods covered in the book are applicable to various other materials such as carbon nanotubes, polymers, metals, and ceramics. Throughout the book, readers are introduced to key topics of relevance to nanocomposite materials and structures—supported by journal articles that discuss recent developments in modeling techniques and in the prediction of mechanical and thermal properties. This timely, highly practical resource: Explains the molecular dynamics (MD) simulation procedure for nanofiber and nanoparticle reinforced polymer composites Compares results of experimental and theoretical results from mechanical models at different length scales Covers different types of fibers and matrix materials that constitute composite materials, including glass, boron, carbon, and Kevlar Reviews models that predict the stiffness of short-fiber composites, including the self-consistent model for finite-length fibers, bounding models, and the Halpin-Tsai equation Describes various molecular modeling methods such as Monte Carlo, Brownian dynamics, dissipative particle dynamics, and lattice Boltzmann methods Highlights the potential of nanocomposites for defense and space applications Perfect for materials scientists, materials engineers, polymer scientists, and mechanical engineers, Mechanics of Particle- and Fiber-Reinforced Polymer Nanocomposites is also a must-have reference for computer simulation scientists seeking to improve their understanding of reinforced polymer nanocomposites.

Computational and Experimental Simulations in Engineering

Author : Hiroshi Okada,Satya N. Atluri
Publisher : Springer Nature
Page : 1278 pages
File Size : 48,8 Mb
Release : 2019-11-16
Category : Technology & Engineering
ISBN : 9783030270537

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Computational and Experimental Simulations in Engineering by Hiroshi Okada,Satya N. Atluri Pdf

This book gathers the latest advances, innovations, and applications in the field of computational engineering, as presented by leading international researchers and engineers at the 24th International Conference on Computational & Experimental Engineering and Sciences (ICCES), held in Tokyo, Japan on March 25-28, 2019. ICCES covers all aspects of applied sciences and engineering: theoretical, analytical, computational, and experimental studies and solutions of problems in the physical, chemical, biological, mechanical, electrical, and mathematical sciences. As such, the book discusses highly diverse topics, including composites; bioengineering & biomechanics; geotechnical engineering; offshore & arctic engineering; multi-scale & multi-physics fluid engineering; structural integrity & longevity; materials design & simulation; and computer modeling methods in engineering. The contributions, which were selected by means of a rigorous international peer-review process, highlight numerous exciting ideas that will spur novel research directions and foster multidisciplinary collaborations.

Handbook of Epoxy/Fiber Composites

Author : Sanjay Mavinkere Rangappa,Jyotishkumar Parameswaranpillai,Suchart Siengchin,Sabu Thomas
Publisher : Springer Nature
Page : 1176 pages
File Size : 47,9 Mb
Release : 2022-08-01
Category : Technology & Engineering
ISBN : 9789811936036

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Handbook of Epoxy/Fiber Composites by Sanjay Mavinkere Rangappa,Jyotishkumar Parameswaranpillai,Suchart Siengchin,Sabu Thomas Pdf

This handbook presents the current state-of-knowledge in the area of epoxy fiber composites. The book emphasizes new challenges and covers synthesis, characterization, and applications of epoxy/fiber composites. Leading researchers from industry, academy, government and private research institutions across the globe have contributed to this book. The contents comprehensively cover the current status, trends, future directions, and application opportunities in the field. This highly application-oriented handbook will be of use to researchers and professionals alike.

Thermomechanical Mean-Field Modeling and Experimental Characterization of Long Fiber-Reinforced Sheet Molding Compound Composites

Author : Kehrer, Maria Loredana
Publisher : KIT Scientific Publishing
Page : 204 pages
File Size : 52,7 Mb
Release : 2019-06-13
Category : Technology & Engineering
ISBN : 9783731509240

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Thermomechanical Mean-Field Modeling and Experimental Characterization of Long Fiber-Reinforced Sheet Molding Compound Composites by Kehrer, Maria Loredana Pdf

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.

Models, Databases and Simulation Tools Needed for Realization of Integrated Computational Mat. Eng. (ICME 2010)

Author : Steven M. Arnold and Terry T. Wong, Editors
Publisher : ASM International
Page : 206 pages
File Size : 41,6 Mb
Release : 2011
Category : Technology & Engineering
ISBN : 9781615038435

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Models, Databases and Simulation Tools Needed for Realization of Integrated Computational Mat. Eng. (ICME 2010) by Steven M. Arnold and Terry T. Wong, Editors Pdf

Fracture, Fatigue, Failure and Damage Evolution, Volume 8

Author : Allison M. Beese,Alan T. Zehnder,Shuman Xia
Publisher : Springer
Page : 276 pages
File Size : 40,8 Mb
Release : 2015-11-07
Category : Technology & Engineering
ISBN : 9783319216119

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Fracture, Fatigue, Failure and Damage Evolution, Volume 8 by Allison M. Beese,Alan T. Zehnder,Shuman Xia Pdf

Fracture, Fatigue, Failure and Damage Evolution, Volume 8 represents the eighth of nine volumes of technical papers presented at the Society for Experimental Mechanics (SEM) 15th International Congress & Exposition on Experimental and Applied Mechanics, held at Costa Mesa, California, June 8-11, 2015. The full set of proceedings also includes volumes on: Dynamic Behavior of Materials, Challenges in Mechanics of Time Dependent Materials, Advancement of Optical Methods in Experimental Mechanics, Experimental and Applied Mechanics, 16th International Symposium on MEMS and Nanotechnology, International Symposium on the Mechanics of Composite and Multi-functional Materials, 5th International Symposium on the Mechanics of Biological Systems and Materials, International Symposium on the Mechanics of Composite and Multi-functional Materials; and Residual Stress, Thermomechanics & Infrared Imaging, Hybrid Techniques and Inverse Problems.

Fiber-dependent injection molding simulation of discontinuous reinforced polymers

Author : Wittemann, Florian
Publisher : KIT Scientific Publishing
Page : 180 pages
File Size : 47,9 Mb
Release : 2022-11-18
Category : Technology & Engineering
ISBN : 9783731512172

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Fiber-dependent injection molding simulation of discontinuous reinforced polymers by Wittemann, Florian Pdf

This work presents novel simulation techniques for injection molding of fiber reinforced polymers. These include approaches for anisotropic flow modeling, hydrodynamic forces from fluid on fibers, contact forces between fibers, a novel fiber breakage modeling approach and anisotropic warpage analysis. Due to the coupling of fiber breakage and anisotropic flow modeling, the fiber breakage directly influences the modeled cavity pressure, which is validated with experimental data.

A rapid virtual autoclave for carbon fiber reinforced plastics

Author : Junhong Zhu
Publisher : Logos Verlag Berlin GmbH
Page : 174 pages
File Size : 54,7 Mb
Release : 2023-01-26
Category : Technology & Engineering
ISBN : 9783832556129

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A rapid virtual autoclave for carbon fiber reinforced plastics by Junhong Zhu Pdf

Structural carbon fiber reinforced plastic parts are usually manufactured through autoclave processing for high-performance aerospace applications. Today’s aerospace composite manufacturing techniques require high quality with robust manufacturing processes. Manufacturing process simulation enables the investigations of physical effects and manufacturing process mechanisms. This approach has been increasingly used to predict and optimize the manufacturing process for high part quality at low manufacturing costs. Owing to a complicated manufacturing environment involving multi-physics characteristics, there is a critical need to develop an efficient and cost-effective numerical methodology with a systematic study. This thesis contributes to the systematic investigations of the process modeling, simulation, thermal measurement, and optimization in composite manufacturing of autoclave processing. The method provides a correct and efficient thermal analysis and optimization in autoclave processing to achieve better process control and ensure the quality of composite parts. The presented framework can be applied directly in autoclave production with larger dimensions and full-scale tools for aerospace structures. The developed methodology allows quick delivery guidelines of production plans and optimization strategies for composite manufacturing in a highly useful and cost-effective way, thereby reducing the cost in the design and manufacturing phase. Since July 2017, Mr. Junhong Zhu has been working as a research assistant in the department of modeling and simulation at the FIBRE (Faserinstitut Bremen e.V.) at the University of Bremen. He deals with the process modeling and simulation in composite manufacturing of autoclave processing. His research focuses on numerical methods, such as computational fluid dynamics and finite element methods, muti-physics coupling schemes, and process optimization. He is also interested in the use of artificial intelligence in the manufacturing process.

Materials and Process Modeling of Aerospace Composites

Author : Charles Lu
Publisher : SAE International
Page : 190 pages
File Size : 55,6 Mb
Release : 2019-04-30
Category : Technology & Engineering
ISBN : 9780768001921

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Materials and Process Modeling of Aerospace Composites by Charles Lu Pdf

Since the successful production of carbon fibers in early 1960s, composite materials have emerged as the materials of choice for general aviation aircraft, military aircraft, space launch vehicles, and unmanned air vehicles. This has revolutionized the aerospace industry due to their excellent mechanical and physical properties, as well as weight-reducing ability. The next- generation material development model should operate in an integrated computational environment, where new material development, manufacturability, and product design practice are seamlessly interconnected. Materials and Process Modeling of Aerospace Composites reports recent developments on materials and processes of aerospace composites by using computational modeling, covering the following aspects: • The historical uses of composites in aerospace industry, documenting in detail the early usage of composite materials on Premier I by Raytheon to recent full-scale applications of composites on large commercial aircraft by Boeing and Airbus. • An overview on the classifications of composites used in aerospace industry, ranging from conventional glass- fiber reinforced composites to advanced graphene nanocomposites. • The recent work on computational material engineering on aerospace composite materials, including fundamental computational frame work and case studies on the modeling of materials and processes