Science and Engineering of Short Fibre Reinforced Polymer Composites Book

Science and Engineering of Short Fibre Reinforced Polymer Composites


  • Author : S-Y Fu
  • Publisher : Elsevier
  • Release Date : 2009-07-06
  • Genre: Technology & Engineering
  • Pages : 364
  • ISBN 10 : 9781845696498
  • Total Read : 71
  • File Size : 19,6 Mb

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Science and Engineering of Short Fibre Reinforced Polymer Composites Summary:

When fibres in a composite are discontinuous and are shorter than a few millimetres, the composite is called a ‘short fibre reinforced composite (SFRP)’. SFRPs have found extensive applications in automobiles, business machines, durable consumer items, sporting goods and electrical industries owing to their low cost, easy processing and superior mechanical properties over the parent polymers. The book summarises recent developments in this area, focusing on the fundamental mechanisms that govern the mechanical properties including strength, modulus, fracture toughness and thermal properties of SFRP materials. This book covers the following topics: extrusion compounding and injection moulding, major factors affecting mechanical performance, stress transfer, strength, elastic modulus flexural modulus, thermal conductivity and expansion, non-linear stress-strain behaviour and fracture mechanics of short fibre reinforced polymers. With its distinguished team of authors, Science and engineering of short fibre reinforced polymer composites is a standard reference for anyone involved in the development, manufacture and use of SFRPs. It will also provide an in-depth understanding of the behaviour of these versatile materials. Reviews the mechanical properties and functions of short fibre reinforced polymer composites (SFRP) Examines recent developments in the fundamental mechanisms of SFRP's Assesses major factors affecting mechanical performance such as stress transfer and strength

Short Fibre Polymer Composites Book

Short Fibre Polymer Composites


  • Author : S K De
  • Publisher : Elsevier
  • Release Date : 1996-10-31
  • Genre: Technology & Engineering
  • Pages : 272
  • ISBN 10 : 9781845698676
  • Total Read : 99
  • File Size : 13,9 Mb

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Short Fibre Polymer Composites Summary:

Provides a detailed insight into short fibres of different types (metallic and organic) in a polymer matrix, as well as reporting on the design considerations and applications of such composites. It relates unparalleled research into a diverse range of composites.

Science and Engineering of Short Fibre Reinforced Polymer Composites Book

Science and Engineering of Short Fibre Reinforced Polymer Composites


  • Author : Shao-yun Fu
  • Publisher : Woodhead Publishing
  • Release Date : 2019-08-24
  • Genre: Technology & Engineering
  • Pages : 470
  • ISBN 10 : 9780081026243
  • Total Read : 66
  • File Size : 11,5 Mb

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Science and Engineering of Short Fibre Reinforced Polymer Composites Summary:

Science and Engineering of Short Fibre Reinforced Polymer Composites, Second Edition, provides the latest information on the ‘short fiber reinforced composites' (SFRP) that have found extensive applications in automobiles, business machines, durable consumer items, sporting goods and electrical industries due to their low cost, easy processing and superior mechanical properties over parent polymers. This updated edition presents new developments in this field of research and includes new chapters on electrical conductivity, structural monitoring, functional properties, self-healing, finite element method techniques, multi-scale SFRCs, and both modern computational and process engineering methods. Reviews the mechanical properties and functions of short fiber reinforced polymer composites (SFRP) Examines recent developments in the fundamental mechanisms of SFRP's Assesses major factors affecting mechanical performance, such as stress transfer and strength Includes new chapters on electrical conductivity, structural monitoring, functional properties, self-healing, finite element method techniques, multi-scale SFRCs, modern computational methods, and process engineering methods

Multi Scale Continuum Mechanics Modelling of Fibre Reinforced Polymer Composites Book

Multi Scale Continuum Mechanics Modelling of Fibre Reinforced Polymer Composites


  • Author : Wim Van Paepegem
  • Publisher : Woodhead Publishing
  • Release Date : 2020-11-25
  • Genre: Technology & Engineering
  • Pages : 764
  • ISBN 10 : 9780128189856
  • Total Read : 85
  • File Size : 6,5 Mb

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Multi Scale Continuum Mechanics Modelling of Fibre Reinforced Polymer Composites Summary:

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

3D Fibre Reinforced Polymer Composites Book
Score: 4
From 1 Ratings

3D Fibre Reinforced Polymer Composites


  • Author : L. Tong
  • Publisher : Elsevier
  • Release Date : 2002-11-20
  • Genre: Technology & Engineering
  • Pages : 254
  • ISBN 10 : 0080525822
  • Total Read : 77
  • File Size : 6,9 Mb

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3D Fibre Reinforced Polymer Composites Summary:

Fibre reinforced polymer (FRP) composites are used in almost every type of advanced engineering structure, with their usage ranging from aircraft, helicopters and spacecraft through to boats, ships and offshore platforms and to automobiles, sports goods, chemical processing equipment and civil infrastructure such as bridges and buildlings. The usage of FRP composites continues to grow at an impessive rate as these materials are used more in their existing markets and become established in relatively new markets such as biomedical devices and civil structures. A key factor driving the increased applications of composites over the recent years is the development of new advanced forms of FRP materials. This includes developments in high performance resin systems and new styles of reinforcement, such as carbon nanotubes and nanoparticles. This book provides an up-to-date account of the fabrication, mechanical properties, delamination resistance, impact tolerance and applications of 3D FRP composites. The book focuses on 3D composites made using the textile technologies of weaving, braiding, knitting and stiching as well as by z-pinning.

Failure Criteria in Fibre Reinforced Polymer Composites Book
Score: 5
From 1 Ratings

Failure Criteria in Fibre Reinforced Polymer Composites


  • Author : M. Hinton
  • Publisher : Elsevier
  • Release Date : 2004-08-31
  • Genre: Science
  • Pages : 1276
  • ISBN 10 : 008044475X
  • Total Read : 89
  • File Size : 20,5 Mb

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Failure Criteria in Fibre Reinforced Polymer Composites Summary:

Fiber reinforced polymer composites are an extremely broad and versatile class of material.Their high strength coupled with lightweight leads to their use wherever structural efficiency is at a premium. Applications can be found in aircraft, process plants, sporting goods and military equipment. However they are heterogeneous in construction and antisotropic, which makes making strength prediction extremely difficult especially compared to that of a metal. This book brings together the results of a 12year worldwide failure exercise encompassing 19 theories in a single volume. Each contributor describes their own theory and employs it to solve 14 challenging problems. The accuracy of predictions and the performance of the theories are assessed and recommendations made on the uses of the theories in engineering design. All the necessary information is provided for the methodology to be readily employed for validating and benchmarking new theories as they emerge. Brings together 19 failure theories, with many application examples. Compares the leading failure theories with one another and with experimental data Failure to apply these theories could result in potentially unsafe designs or over design.

Advanced Fibre Reinforced Polymer  FRP  Composites for Structural Applications Book

Advanced Fibre Reinforced Polymer FRP Composites for Structural Applications


  • Author : J Bai
  • Publisher : Elsevier
  • Release Date : 2013-09-30
  • Genre: Technology & Engineering
  • Pages : 928
  • ISBN 10 : 9780857098641
  • Total Read : 62
  • File Size : 9,7 Mb

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Advanced Fibre Reinforced Polymer FRP Composites for Structural Applications Summary:

Advanced fibre-reinforced polymer (FRP) composites have become essential materials for the building of new structures and for the repair of existing infrastructure. Advanced fibre-reinforced polymer (FRP) composites for structural applications provides an overview of different advanced FRP composites and the use of these materials in a variety of application areas. Part one introduces materials used in the creation of advanced FRP composites including polyester, vinylester and epoxy resins. Part two goes on to explore the processing and fabrication of advanced FRP composites and includes chapters on prepreg processing and filament winding processes. Part three highlights properties of advanced FRP composites and explores how performance can be managed and tested. Applications of advanced FRP composites, including bridge engineering, pipe rehabilitation in the oil and gas industry and sustainable energy production, are discussed in part four. With its distinguished editor and international team of expert contributors, Advanced fibre-reinforced polymer (FRP) composites for structural applications is a technical resource for researchers and engineers using advanced FRP composites, as well as professionals requiring an understanding of the production and properties of advanced FRP composites, and academics interested in this field. Provides an overview of different advanced FRP composites and the use of these materials in a variety of application areas Introduces materials used in the creation of advanced FRP composites including polyester, vinylester and epoxy resins Explores the processing and fabrication of advanced FRP composites and includes chapters on prepreg processing and filament winding processes

Short Fibre Polymer Composites Book

Short Fibre Polymer Composites


  • Author : S K De
  • Publisher : Woodhead Publishing
  • Release Date : 1996-07-03
  • Genre: Technology & Engineering
  • Pages : 260
  • ISBN 10 : 1855732203
  • Total Read : 64
  • File Size : 7,5 Mb

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Short Fibre Polymer Composites Summary:

Provides a detailed insight into short fibers of different types (metallic and organic) in a polymer matrix, as well as reporting on the design considerations and applications of such composites. It relates unparalleled research into a diverse range of composites.