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Adiabatic Shear Localization

Adiabatic Shear Localization
  • Author : Bradley Dodd
  • Publsiher : Elsevier
  • Release : 22 May 2012
  • ISBN : 008098200X
  • Pages : 468 pages
  • Rating : 4/5 from 21 ratings
GET THIS BOOKAdiabatic Shear Localization

Summary:
Adiabatic shear localization is a mode of failure that occurs in dynamic loading. It is characterized by thermal softening occurring over a very narrow region of a material and is usually a precursor to ductile fracture and catastrophic failure. This reference source is the revised and updated version of the first detailed study of the mechanics and modes of adiabatic shear localization in solids. Building on the success of the first edition, the book provides a systematic description of a number of aspects of adiabatic shear banding. The concepts and techniques described in this work can usefully be applied to solve a multitude of problems encountered by those investigating fracture and damage in materials, impact dynamics, metal working and other areas. Specific chapters focus on energetic materials, polymers, bulk metal glasses, and the mathematics of shear banding as well as the numerical modeling of them. With its detailed coverage of the subject, this book is of great interest to academics and researchers into materials performance as well as professionals. Up-to-date coverage of the subject and research that has occurred over the past 20 years Each chapter is written on a different sub-field of adiabatic shear by an acknowledged expert in the field Detailed and clear discussions of each aspect


Adiabatic Shear Localization

Adiabatic Shear Localization
  • Author : Bradley Dodd,Yilong Bai
  • Publisher : Elsevier
  • Release : 22 May 2012
GET THIS BOOKAdiabatic Shear Localization

Adiabatic shear localization is a mode of failure that occurs in dynamic loading. It is characterized by thermal softening occurring over a very narrow region of a material and is usually a precursor to ductile fracture and catastrophic failure. This reference source is the revised and updated version of the first detailed study of the mechanics and modes of adiabatic shear localization in solids. Building on the success of the first edition, the book provides a systematic description of a

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Introduction to Adiabatic Shear Localization

Introduction to Adiabatic Shear Localization
  • Author : Bradley Dodd,Yilong Bai
  • Publisher : World Scientific Publishing Company
  • Release : 14 August 2014
GET THIS BOOKIntroduction to Adiabatic Shear Localization

Adiabatic shear bands are found in a variety of metals and other materials; they cause rapid weakening due to energy concentration into narrow regions of the material. This is the very first book on this important topic and the only true introduction to the subject. An enhanced and updated student-friendly edition of the authors' 1992 book Adiabatic Shear Localization: Occurrence, Theories and Applications, this seminal text now includes essential Further Reading sections in some chapters. It explains adiabatic shear bands in

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Adiabatic Shear Localization

Adiabatic Shear Localization
  • Author : Yilong Bai,Bradley Dodd
  • Publisher : Pergamon
  • Release : 01 January 1992
GET THIS BOOKAdiabatic Shear Localization

Adiabatic shear localization is a mode of failure that occurs in dynamic loading. It is characterized by thermal softening occurring over a very narrow region of a material and is usually a precursor to ductile fracture and catastrophic failure. This reference source is the first detailed study of the mechanics and modes of adiabatic shear localization in solids, and provides a systematic description of a number of aspects of adiabatic shear banding. The inclusion of the appendices which provide a

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Adiabatic Shear Localization

Adiabatic Shear Localization
  • Author : Bradley Dodd,Yilong Bai
  • Publisher : Elsevier
  • Release : 26 June 2022
GET THIS BOOKAdiabatic Shear Localization

Adiabatic shear localization is a mode of failure that occurs in dynamic loading. It is characterized by thermal softening occurring over a very narrow region of a material and is usually a precursor to ductile fracture and catastrophic failure. This reference source is the revised and updated version of the first detailed study of the mechanics and modes of adiabatic shear localization in solids. Building on the success of the first edition, the book provides a systematic description of a

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Mechanical Properties and Testing of Polymers

Mechanical Properties and Testing of Polymers
  • Author : G.M. Swallowe
  • Publisher : Springer Science & Business Media
  • Release : 17 April 2013
GET THIS BOOKMechanical Properties and Testing of Polymers

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

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Dynamic Damage and Fragmentation

Dynamic Damage and Fragmentation
  • Author : David Edward Lambert,Crystal L. Pasiliao,Benjamin Erzar,Benoit Revil-Baudard,Oana Cazacu
  • Publisher : John Wiley & Sons
  • Release : 14 January 2019
GET THIS BOOKDynamic Damage and Fragmentation

Engineering structures may be subjected to extreme high-rate loading conditions, like those associated with natural disasters (earthquakes, tsunamis, rock falls, etc.) or those of anthropic origin (impacts, fluid–structure interactions, shock wave transmissions, etc.). Characterization and modeling of the mechanical behavior of materials under these environments is important in predicting the response of structures and improving designs. This book gathers contributions by eminent researchers in academia and government research laboratories on the latest advances in the understanding of the dynamic

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Metallurgical Applications of Shock-Wave and High-Strain Rate Phenomena

Metallurgical Applications of Shock-Wave and High-Strain Rate Phenomena
  • Author : Murr
  • Publisher : CRC Press
  • Release : 06 June 1986
GET THIS BOOKMetallurgical Applications of Shock-Wave and High-Strain Rate Phenomena

Emphasizing metallurgical and materials applications of shock-wave and high-strain-rate phenomena, this superb volume presents the work of the leading international authorities who examine the state of the art of explosive and related technologies in the context of metallurgical and materials processing and fabrication.

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Springer Handbook of Experimental Solid Mechanics

Springer Handbook of Experimental Solid Mechanics
  • Author : William N. Sharpe
  • Publisher : Springer Science & Business Media
  • Release : 04 December 2008
GET THIS BOOKSpringer Handbook of Experimental Solid Mechanics

As a reference book, the Springer Handbook provides a comprehensive exposition of the techniques and tools of experimental mechanics. An informative introduction to each topic is provided, which advises the reader on suitable techniques for practical applications. New topics include biological materials, MEMS and NEMS, nanoindentation, digital photomechanics, photoacoustic characterization, and atomic force microscopy in experimental solid mechanics. Written and compiled by internationally renowned experts in the field, this book is a timely, updated reference for both practitioners and researchers

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Dynamics of Materials

Dynamics of Materials
  • Author : Lili Wang,Liming Yang,Xinlong Dong,Xiquan Jiang
  • Publisher : Academic Press
  • Release : 25 July 2019
GET THIS BOOKDynamics of Materials

Dynamics of Materials: Experiments, Models and Applications addresses the basic laws of high velocity flow/deformation and dynamic failure of materials under dynamic loading. The book comprehensively covers different perspectives on volumetric law, including its macro-thermodynamic basis, solid physics basis, related dynamic experimental study, distortional law, including the rate-dependent macro-distortional law reflecting strain-rate effect, its micro-mechanism based on dislocation dynamics, and dynamic experimental research based on the stress wave theory. The final section covers dynamic failure in relation to dynamic

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