Science And Engineering Of Short Fibre Reinforced Polymer Composites

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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

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Genre : Technology & Engineering
Author : Shao-yun Fu
Publisher : Woodhead Publishing
Release : 2019-08-24
File : 471 Pages
ISBN-13 : 9780081026243


On The Anisotropic Plastic Behaviour Of Short Fibre Reinforced Thermoplastics And Its Description By Phenomenological Material Modelling

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A requirement for the safe design of thermoplastic parts is the ability to precisely predict mechanical behaviour by finite element simulations. Typical examples include the engineering of relevant components in automotive applications. For this purpose adequate material models are essential. In this context, the present work introduces a material modelling approach for short fibre reinforced thermoplastics (SFRTPs). SFRTP parts are processed cost-effectively by injection moulding and show a varying degree of anisotropy due to the locally inhomogeneous fibre distributions that arise during the moulding process. The presented material model considers linear-elastic behaviour and non-linear orthotropic stress-state dependent viscoplastic deformation for arbitrary fibre distributions. The constitutive equations are verified with the experiments of a PPGF30 material regarding different stress-states and orientations.

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Genre : Technology & Engineering
Author : Felix Dillenberger
Publisher : Springer Nature
Release : 2019-10-21
File : 238 Pages
ISBN-13 : 9783658281991


Short Fibre Polymer Composites

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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.

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Genre : Technology & Engineering
Author : S K De
Publisher : Woodhead Publishing
Release : 1996-07-03
File : 276 Pages
ISBN-13 : 1855732203


Reinforced Thermoplastics

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This report covers semi and non-crystalline thermoplastics, polymer blends and various classes of reinforcing fibres, and the properties which determine their suitability for specific applications. A detailed discussion of the injection moulding of reinforced thermoplastics includes the effect of processing on fibre distribution and breakage. An additional indexed section containing several hundred abstracts from the Rapra Polymer Library database provides useful references for further reading.

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Genre : Technology & Engineering
Author : P. G. Kelleher
Publisher : iSmithers Rapra Publishing
Release : 1993
File : 140 Pages
ISBN-13 : 0902348787


Short Fibre Reinforced Thermoplastics

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Good,No Highlights,No Markup,all pages are intact, Slight Shelfwear,may have the corners slightly dented, may have slight color changes/slightly damaged spine.

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Genre : Technology & Engineering
Author : M. J. Folkes
Publisher : Research Studies Press Limited
Release : 1982
File : 200 Pages
ISBN-13 : UCAL:B4388147


Short Fiber Reinforced Composite Materials

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Author :
Publisher : ASTM International
Release : 1982
File : 273 Pages
ISBN-13 :


Mechanical Properties Of Reinforced Thermoplastics

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The reinforcement of materials such as mud and clay by hair, straw and vegetable fibres has been long established in man's history, enabling him to improve his buildings and extend his engineering abilities. With the advent of modern synthetic polymers it was rapidly realised that the addition of fibres, flakes and particulate materials to polymer matrices could improve mechanical properties significantly. Fibres and flakes are the most effective and have enabled several polymers with limited properties to compete with long-established metallic materials, reSUlting in cost, weight and processing economies. This is increasingly apparent in the selection of materials for aerospace and road vehicle applications as well as in a multitude of domestic products. Reinforced plastics, both thermosets and thermoplastics, are used in increasingly harsh environments involving elevated temperatures and aggressive conditions. Fibre reinforcement of thermoplastics dominates, and a pattern of increasing replacement of fibre reinforced thermosets by reinforced thermoplastics is emerging. This trend is encouraged by the development of continuous fibre reinforced grades of the newer high-temperature engineering thermoplastics such as polyether ether ketone. The first part of this book reviews the mechanical properties and theories of short fibre reinforcement. The principal reinforcements are reviewed and a separate chapter is devoted to the uses of natural fibres as reinforcements for thermoplastics. This is an interesting and commercially important area, especially for Third World countries v vi Preface where these fibres are grown but are facing severe competition from synthetic fibres in traditional applications such as ropes and matting.

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Genre : Technology & Engineering
Author : D.W. Clegg
Publisher : Springer Science & Business Media
Release : 2012-12-06
File : 331 Pages
ISBN-13 : 9789400941939


Multi Scale Continuum Mechanics Modelling Of Fibre Reinforced Polymer Composites

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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:

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Genre : Technology & Engineering
Author : Wim Van Paepegem
Publisher : Woodhead Publishing
Release : 2020-11-25
File : 766 Pages
ISBN-13 : 9780128189856


Test Methods And Design Allowables For Fibrous Composites

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Annotation Proceedings of a symposium on [title] held in Phoenix, AZ, Nov. 1986. Data and test methods on: extreme/hostile environments, design allowables, property/behavior specific testing. Annotation copyrighted by Book News, Inc., Portland, OR.

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Genre : Composite materials
Author : Christos C. Chamis
Publisher : ASTM International
Release : 1989
File : 295 Pages
ISBN-13 : 9780803111967


Advances In Thermoplastic Matrix Composite Materials

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Genre : Composite materials
Author : Golam M. Newaz
Publisher : ASTM International
Release : 1989
File : 309 Pages
ISBN-13 : 9780803112728