Explosion, Shock Wave and High-Energy Reaction Phenomena

Explosion, Shock Wave and High-Energy Reaction Phenomena

Author: Shigeru Itoh

Publisher: Trans Tech Publications Ltd

Published: 2011-01-20

Total Pages: 322

ISBN-13: 3038134589

DOWNLOAD EBOOK

Volume is indexed by Thomson Reuters CPCI-S (WoS). The objective of this special volume is to disseminate information on current trends in the fields of explosion, shock wave and high-energy reaction phenomena and to establish a world-wide network so as to overcome the limitation, on related research fields, arising from the low number of active researchers.


Explosion, Shock Wave and High-Energy Reaction Phenomena II

Explosion, Shock Wave and High-Energy Reaction Phenomena II

Author: Shigeru Itoh

Publisher: Trans Tech Publications Ltd

Published: 2013-07-31

Total Pages: 288

ISBN-13: 3038262072

DOWNLOAD EBOOK

Volume is indexed by Thomson Reuters CPCI-S (WoS). Explosion, shock wave, high-energy reaction and other high-rate phenomena of various materials are the main topic of this collection. The book includes papers related to explosion and shock wave phenomena driven by explosives and other impulsive phenomena including their applications. The use of such intense dynamic loading has been employed for materials processing technology and the field is currently spreading to food processing and others. The volume will bring to readers new idea for the progress in science and technology.


Explosion Shock Waves and High Strain Rate Phenomena

Explosion Shock Waves and High Strain Rate Phenomena

Author: K. Hokamoto

Publisher: Materials Research Forum LLC

Published: 2019-08-20

Total Pages: 182

ISBN-13: 1644900335

DOWNLOAD EBOOK

The book presents the papers presented at the 6th international conference on Explosion, Shock Wave and High Strain-Rate Phenomena (ESHP). Topics covered include: Advanced Manufacturing under Impact/Shock Loading, Detonation of High Pressure Flammable Gas in Closed Spaces, High Strain-Rate Behaviour of Auxetic Cellular Structures, Underwater Shock Waves Generation, Magnetic Pressure Welding of Aluminum Sheets, Shock Synthesis of Zirconium Oxides, Impact Joining of Dissimilar Metals, High-Speed Oblique Collision of Metals, Dynamic Behavior of Dislocation Wall Structures, Tensile Strength of Rock at High Strain Rates, Fiber Reinforced Mortar, Impact Analysis of Carbon Fiber Reinforced Polymer, Explosive Welding , Underwater Explosive Welding , Making Ultrafine Explosives, Aluminum-Steel Explosive Cladding, Explosively Cladded Aluminum Hybrid Composites, Explosive Clads with Interlayers.


Explosion, Shock-Wave and High-Strain-Rate Phenomena of Advanced Materials

Explosion, Shock-Wave and High-Strain-Rate Phenomena of Advanced Materials

Author: Kazuyuki Hokamoto

Publisher: Elsevier

Published: 2021-06-09

Total Pages: 176

ISBN-13: 0128232374

DOWNLOAD EBOOK

Materials processing using explosion, shock-wave and high-strain-rate phenomena was developed after WWII, and these explosive forming and welding techniques have since been adopted as an accepted industrial technology. Such extremely high-rate phenomena historically used empirical experiences while the experimental conditions were not well documented due to the difficulties inherent in understanding the real response or behaviour of materials. Based upon the recent development of numerical techniques for analysis and the enriched data available on the behaviour of materials, it is now possible to predict such high-rate phenomena based upon numerical and experimental approaches including optical observation. Explosion, Shock-wave and High-strain-rate Phenomena of Advanced Materials demonstrates the deformation of various materials at high-rate based upon numerical analysis and supported by experimental evidence. The book is recommended for researchers and engineers who would like to learn more about the high-rate effect of materials and those who need to resolve multi-physics problems based on numerical approach. It is also ideal for researchers and engineers interested with explosive and other high-rate processing of materials. Presents numerical techniques on the analysis and enriched data on the behavior of materials based upon a numerical approach Provides case studies to illustrate the various methods discussed Includes mechanical response at high-rates of porous materials


Explosion, Shock Wave and High-Strain-Rate Phenomena V

Explosion, Shock Wave and High-Strain-Rate Phenomena V

Author: Peng Wan Chen

Publisher: Trans Tech Publications Ltd

Published: 2018-01-03

Total Pages: 194

ISBN-13: 3035730784

DOWNLOAD EBOOK

5th ESHP Selected, peer reviewed papers from the Fifth International Symposium on Explosion, Shock Wave and High-Strain-Rate Phenomena (5th ESHP), September 25-28, 2016, Beijing, China


Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena

Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena

Author: Ya B. Zel'dovich

Publisher: Courier Corporation

Published: 2002-03-15

Total Pages: 946

ISBN-13: 0486420027

DOWNLOAD EBOOK

Physical, chemical processes in gases at high temperatures are focus of outstanding text by two distinguished physicists. Combines material from gas dynamics, shock-wave theory, thermodynamics and statistical physics, molecular physics, spectroscopy, radiation theory, other fields for comprehensive treatment. 284 black-and-white illustrations. 1966–1967 edition, originally published in two volumes.


History of Shock Waves, Explosions and Impact

History of Shock Waves, Explosions and Impact

Author: Peter O. K. Krehl

Publisher: Springer Science & Business Media

Published: 2008-09-24

Total Pages: 1298

ISBN-13: 3540304215

DOWNLOAD EBOOK

This unique and encyclopedic reference work describes the evolution of the physics of modern shock wave and detonation from the earlier and classical percussion. The history of this complex process is first reviewed in a general survey. Subsequently, the subject is treated in more detail and the book is richly illustrated in the form of a picture gallery. This book is ideal for everyone professionally interested in shock wave phenomena.