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Thermomechanical Properties of Polymers at High Rates of Strain

Thermomechanical Properties of Polymers at High Rates of Strain PDF Author: Albin S. Trojanowski
Publisher:
ISBN:
Category : Polymers
Languages : en
Pages : 340

Book Description


Thermomechanical Properties of Polymers at High Rates of Strain

Thermomechanical Properties of Polymers at High Rates of Strain PDF Author: Albin S. Trojanowski
Publisher:
ISBN:
Category : Polymers
Languages : en
Pages : 340

Book Description


Mechanics of Solid Polymers

Mechanics of Solid Polymers PDF Author: Jorgen S Bergstrom
Publisher: William Andrew
ISBN: 0323322964
Category : Technology & Engineering
Languages : en
Pages : 524

Book Description
Very few polymer mechanics problems are solved with only pen and paper today, and virtually all academic research and industrial work relies heavily on finite element simulations and specialized computer software. Introducing and demonstrating the utility of computational tools and simulations, Mechanics of Solid Polymers provides a modern view of how solid polymers behave, how they can be experimentally characterized, and how to predict their behavior in different load environments. Reflecting the significant progress made in the understanding of polymer behaviour over the last two decades, this book will discuss recent developments and compare them to classical theories. The book shows how best to make use of commercially available finite element software to solve polymer mechanics problems, introducing readers to the current state of the art in predicting failure using a combination of experiment and computational techniques. Case studies and example Matlab code are also included. As industry and academia are increasingly reliant on advanced computational mechanics software to implement sophisticated constitutive models – and authoritative information is hard to find in one place - this book provides engineers with what they need to know to make best use of the technology available. Helps professionals deploy the latest experimental polymer testing methods to assess suitability for applications Discusses material models for different polymer types Shows how to best make use of available finite element software to model polymer behaviour, and includes case studies and example code to help engineers and researchers apply it to their work

Handbook of Damage Mechanics

Handbook of Damage Mechanics PDF Author: George Z. Voyiadjis
Publisher: Springer
ISBN: 9781461455905
Category : Technology & Engineering
Languages : en
Pages : 1579

Book Description
This authoritative reference provides comprehensive coverage of the topics of damage and healing mechanics. Computational modeling of constitutive equations is provided as well as solved examples in engineering applications. A wide range of materials that engineers may encounter are covered, including metals, composites, ceramics, polymers, biomaterials, and nanomaterials. The internationally recognized team of contributors employ a consistent and systematic approach, offering readers a user-friendly reference that is ideal for frequent consultation. Handbook of Damage Mechanics: Nano to Macro Scale for Materials and Structures is ideal for graduate students and faculty, researchers, and professionals in the fields of Mechanical Engineering, Civil Engineering, Aerospace Engineering, Materials Science, and Engineering Mechanics.

Viscoelastic Properties of Polymers

Viscoelastic Properties of Polymers PDF Author: John D. Ferry
Publisher: John Wiley & Sons
ISBN: 9780471048947
Category : Technology & Engineering
Languages : en
Pages : 676

Book Description
Viscoelastic behavior reflects the combined viscous and elastic responses, under mechanical stress, of materials which are intermediate between liquids and solids in character. Polymers the basic materials of the rubber and plastic industries and important to the textile, petroleum, automobile, paper, and pharmaceutical industries as well exhibit viscoelasticity to a pronounced degree. Their viscoelastic properties determine the mechanical performance of the final products of these industries, and also the success of processing methods at intermediate stages of production. Viscoelastic Properties of Polymers examines, in detail, the effects of the many variables on which the basic viscoelastic properties depend. These include temperature, pressure, and time; polymer chemical composition, molecular weight and weight distribution, branching and crystallinity; dilution with solvents or plasticizers; and mixture with other materials to form composite systems. With guidance by molecular theory, the dependence of viscoelastic properties on these variables can be simplified by introducing certain ancillary concepts such as the fractional free volume, the monomeric friction coefficient, and the spacing between entanglement loci, to provide a qualitative understanding and in many cases a quantitative prediction of how to achieve desired results. The phenomenological theory of viscoelasticity which permits interrelation of the results of different types of experiments is presented first, with many useful approximation procedures for calculations given. A wide variety of experimental methods is then described, with critical evaluation of their applicability to polymeric materials of different consistencies and in different regions of the time scale (or, for oscillating deformations, the frequency scale). A review of the present state of molecular theory follows, so that viscoelasticity can be related to the motions of flexible polymer molecules and their entanglements and network junctions. The dependence of viscoestic properties on temperature and pressure, and its descriptions using reduced variables, are discussed in detail. Several chapters are then devoted to the dependence of viscoelastic properties on chemical composition, molecular weight, presence of diluents, and other features, for several characteristic classes of polymer materials. Finally, a few examples are given to illustrate the many potential applications of these principles to practical problems in the processing and use of rubbers, plastics, and fibers, and in the control of vibration and noise. The third edition has been brought up to date to reflect the important developments, in a decade of exceptionally active research, which have led to a wider use of polymers, and a wider recognition of the importance and range of application of viscoelastic properties. Additional data have been incorporated, and the book s chapters on dilute solutions, theory of undiluted polymers, plateau and terminal zones, cross-linked polymers, and concentrated solutions have been extensively rewritten to take into account new theories and new experimental results. Technical managers and research workers in the wide range of industries in which polymers play an important role will find that the book provides basic information for practical applications, and graduate students in chemistry and engineering will find, in its illustrations with real data and real numbers, an accessible introduction to the principles of viscoelasticity.

The Effect of Thermal History, Strain Rate, and Pressure on Mechanical Properties and Craze Morphology of Amorphous Polymers in Tension

The Effect of Thermal History, Strain Rate, and Pressure on Mechanical Properties and Craze Morphology of Amorphous Polymers in Tension PDF Author: John Spencer Trent (Jr.)
Publisher:
ISBN:
Category :
Languages : en
Pages : 174

Book Description


Part 3: Mechanical and Thermomechanical Properties of Polymers

Part 3: Mechanical and Thermomechanical Properties of Polymers PDF Author: Wolfgang Grellmann
Publisher: Springer
ISBN: 9783642551659
Category : Technology & Engineering
Languages : en
Pages : 0

Book Description
The sub volumes A of volume VIII/6 form a series of data collections and handbooks covering properties of polymer solids and polymer melts. The present volume forms the third part of it and compiles concepts and data concerning thermomechanical, mechanical and fracture-mechanical properties of pure, filled and reinforced thermoplastics, thermo sets and high-performance composites.

An Introduction to the Mechanical Properties of Solid Polymers

An Introduction to the Mechanical Properties of Solid Polymers PDF Author: I. M. Ward
Publisher: John Wiley & Sons
ISBN: 0470020377
Category : Technology & Engineering
Languages : en
Pages : 394

Book Description
Provides a comprehensive introduction to the mechanical behaviour of solid polymers. Extensively revised and updated throughout, the second edition now includes new material on mechanical relaxations and anisotropy, composites modelling, non-linear viscoelasticity, yield behaviour and fracture of tough polymers. The accessible approach of the book has been retained with each chapter designed to be self contained and the theory and applications of the subject carefully introduced where appropriate. The latest developments in the field are included alongside worked examples, mathematical appendices and an extensive reference. Fully revised and updated throughout to include all the latest developments in the field Worked examples at the end of the chapter An invaluable resource for students of materials science, chemistry, physics or engineering studying polymer science

Polyurethane Shape Memory Polymers

Polyurethane Shape Memory Polymers PDF Author: W.M. Huang
Publisher: CRC Press
ISBN: 1439838011
Category : Technology & Engineering
Languages : en
Pages : 374

Book Description
Shape memory polymers (SMPs) are some of the most important and valuable engineering materials developed in the last 25 years. These fascinating materials demonstrate remarkably versatile properties-including capacity for actuation and stimulus responsiveness-that are enabling technologists to develop applications used to explore everything from th

Polymer Properties at Room and Cryogenic Temperatures

Polymer Properties at Room and Cryogenic Temperatures PDF Author: Gunther Hartwig
Publisher: Springer Science & Business Media
ISBN: 1475762135
Category : Science
Languages : en
Pages : 268

Book Description
Most descriptions of polymers start at room temperature and end at the melting point. This textbook starts at very low temperatures and ends at room temperature. At low temperatures, may processes and relaxations are frozen which allows singular processes or separate relaxations to be studied. At room temperatures, or at the main glass transitions, many processes overlap and the properties are determined by relaxations. At low temperatures, there are temperature ranges with negligible influences by glass transitions. They can be used for investigating so-called basic properties which arise from principles of solid state physics. The chain structure of polymers, however, requires stringent modifications for establishing solid state physics of polymers. Several processes which are specific of polymers, occur only at low temperatures. There are also technological aspects for considering polymers at low temperatures. More and more applications of polymeric materials in low temperature technology appear. Some examples are thermal and electrical insulations, support elements for cryogenic devices, low-loss materials for high frequency equipments. It is hoped that, in addition to the scientific part, a data collection in the appendix may help to apply polymers more intensively in low temperature technology. The author greatly appreciates the contributions by his coworkers of the Kernforschungszentrum Karlsruhe in measurement and discussion of many data presented in the textbook and its appendix. Fruitful disccussions with the colleagues Prof. H. Baur, Prof. S. Hunklinger, Prof. D. Munz and Prof. R.

Mechanical Properties of Solid Polymers

Mechanical Properties of Solid Polymers PDF Author: I. M. Ward
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 504

Book Description
A concise, self-contained introduction to solid polymers, the mechanics of their behavior and molecular and structural interpretations. This updated edition provides extended coverage of recent developments in rubber elasticity, relaxation transitions, non-linear viscoelastic behavior, anisotropic mechanical behavior, yield behavior of polymers, breaking phenomena, and other fields.