The Kolsky-Hopkinson Bar Machine

The Kolsky-Hopkinson Bar Machine
Title The Kolsky-Hopkinson Bar Machine PDF eBook
Author Ramzi Othman
Publisher Springer
Pages 290
Release 2018-04-20
Genre Technology & Engineering
ISBN 331971919X

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In this book, leading scientists share their vision on the Kolsky-Hopkinson bar technique, which is a well-established experimental technique widely used to characterize materials and structures under dynamic, impact and explosion loads. Indeed, the Kolsky-Hopkinson bar machine is not a simple experimental device. It is rather a philosophical approach to solve the problem of measuring impact events. The split Hopkinson pressure bar conventional device is mainly limited to test homogeneous ductile non-soft materials under uni-axial compression. Extending the use of this device to more versatile applications faces several challenges such as controlling the stress state within the specimen and mastering the measurement of forces and velocities at the specimen-bar interfaces and then the material properties. Thus, the topics discussed in this book mainly focused on the loading and processing parts.

Split Hopkinson (Kolsky) Bar

Split Hopkinson (Kolsky) Bar
Title Split Hopkinson (Kolsky) Bar PDF eBook
Author Weinong W. Chen
Publisher Springer Science & Business Media
Pages 390
Release 2010-11-11
Genre Technology & Engineering
ISBN 1441979824

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The authors systematically describe the general principles of Kolsky bars, or split Hopkinson bars, which are widely used for obtaining dynamic material properties. Modifications are introduced for obtaining reliable data. Specific experiment design guidelines are provided to subject the specimen to desired testing conditions. Detailed Kolsky-bar examples are given for different classes of materials (brittle, ductile, soft, etc) and for different loading conditions (tension, torsion, triaxial, high/low temperatures, intermediate strain rate, etc). The Kolsky bars used for dynamic structural characterization are briefly introduced. A collection of dynamic properties of various materials under various testing conditions is included which may serve as a reference database. This book assists both beginners and experienced professionals in characterizing high-rate material response with high quality and consistency. Readers who may benefit from this work include university students, instructors, R & D professionals, and scholars/engineers in solid mechanics, aerospace, civil and mechanical engineering, as well as materials science and engineering.

Advances in Experimental Impact Mechanics

Advances in Experimental Impact Mechanics
Title Advances in Experimental Impact Mechanics PDF eBook
Author Bo Song
Publisher Elsevier
Pages 360
Release 2021-08-25
Genre Technology & Engineering
ISBN 0128233265

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Summarizing the latest advances in experimental impact mechanics, this book provides cutting-edge techniques and methods for designing, executing, analyzing, and interpreting the results of experiments involving the dynamic responses of materials and structures. It provides tailored guidelines and solutions for specific applications and materials, covering topics such as dynamic characterization of metallic materials, fiber-like materials, low-impedance materials, concrete and more. Damage evolution and constitutive behavior of materials under impact loading, one-dimensional strain loading, intermediate and high strain rates, and other environmental conditions are discussed, as are techniques using high temperature testing and miniature Kolsky bars. Provides cutting-edge techniques and methods for designing, executing, analyzing, and interpreting the results of experimental impact mechanics Covers experimental guidelines and solutions for an array of different materials, conditions, and applications Enables readers to quickly design and perform their own experiments and properly interpret the results Looks at application-specific post-test analysis

Constitutive Relations under Impact Loadings

Constitutive Relations under Impact Loadings
Title Constitutive Relations under Impact Loadings PDF eBook
Author Tomasz Lodygowski
Publisher Springer Science & Business Media
Pages 290
Release 2013-12-19
Genre Science
ISBN 3709117682

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The book describes behavior of materials (ductile, brittle and composites) under impact loadings and high strain rates. The three aspects: experimental, theoretical and numerical are in the focus of interest. Hopkinson bars are mainly used as experimental devices to describe dynamic behavior of materials. The precise description of experimental techniques and interpretation of wave interaction are carefully discussed. Theoretical background refers to rate dependent thermo viscoplastic formulation. This includes the discussion of well posedness of initial boundary value problems and the solution of the system of governing equations using numerical methods. Explicit time integration is used in computations to solve dynamic problems. In addition, many applications in aeronautic and automotive industries are exposed.

Challenges in Mechanics of Time Dependent Materials, Volume 2

Challenges in Mechanics of Time Dependent Materials, Volume 2
Title Challenges in Mechanics of Time Dependent Materials, Volume 2 PDF eBook
Author Meredith Silberstein
Publisher Springer Nature
Pages 101
Release 2021-04-05
Genre Technology & Engineering
ISBN 3030595420

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Challenges in Mechanics of Time-Dependent Materials, Volume 2 of the Proceedings of the 2020 SEM Annual Conference& Exposition on Experimental and Applied Mechanics, the second volume of seven from the Conference, brings together contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of Experimental Mechanics, including papers in the following general technical research areas: Characterization Across Length Scales Extreme Environments & Environmental Effects Soft Materials Damage, fatigue and Fracture Inhomogeneities & Interfaces Viscoelasticity Research in Progress

Dynamic Behavior of Materials

Dynamic Behavior of Materials
Title Dynamic Behavior of Materials PDF eBook
Author Marc A. Meyers
Publisher John Wiley & Sons
Pages 694
Release 1994-10-28
Genre Science
ISBN 9780471582625

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Addresses fundamentals and advanced topics relevant to the behavior of materials under in-service conditions such as impact, shock, stress and high-strain rate deformations. Deals extensively with materials from a microstructure perspective which is the future direction of research today.

Mechanical Properties and Testing of Polymers

Mechanical Properties and Testing of Polymers
Title Mechanical Properties and Testing of Polymers PDF eBook
Author G.M. Swallowe
Publisher Springer Science & Business Media
Pages 313
Release 2013-04-17
Genre Science
ISBN 9401592314

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This volume represents a continuation of the Polymer Science and Technology series edited by Dr. D. M. Brewis and Professor D. Briggs. The theme of the series is the production of a number of stand alone volumes on various areas of polymer science and technology. Each volume contains short articles by a variety of expert contributors outlining a particular topic and these articles are extensively cross referenced. References to related topics included in the volume are indicated by bold text in the articles, the bold text being the title of the relevant article. At the end of each article there is a list of bibliographic references where interested readers can obtain further detailed information on the subject of the article. This volume was produced at the invitation of Derek Brewis who asked me to edit a text which concentrated on the mechanical properties of polymers. There are already many excellent books on the mechanical properties of polymers, and a somewhat lesser number of volumes dealing with methods of carrying out mechanical tests on polymers. Some of these books are listed in Appendix 1. In this volume I have attempted to cover basic mechanical properties and test methods as well as the theory of polymer mechanical deformation and hope that the reader will find the approach useful.