Explosion, shock wave and high-energy reaction phenomena II: selected, peer reviewed papers from the International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena (ESHP Symposium 2013), March 27-29, 2013, Nago, Okinawa, Japan = ESHP Symposium 2013
Gespeichert in:
Körperschaft: | |
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Weitere Verfasser: | , , |
Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Stafa-Zurich ; Enfield, NH
Trans Tech Publications
[2014]
|
Schriftenreihe: | Materials science forum
v. 767 |
Schlagworte: | |
Online-Zugang: | FAW01 FAW02 |
Beschreibung: | "The 4th symposium (ESHP 2014) is organized at Okinawa National College of Technology, Nago, Okinawa, Japan"--Preface Online resource; title from PDF title page (ebrary, viewed November 4, 2013) |
Beschreibung: | 1 online resource (275 pages) illustrations (some color) |
ISBN: | 9783038262077 3038262072 9783037858264 3037858265 |
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245 | 1 | 0 | |a Explosion, shock wave and high-energy reaction phenomena II |b selected, peer reviewed papers from the International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena (ESHP Symposium 2013), March 27-29, 2013, Nago, Okinawa, Japan = ESHP Symposium 2013 |c edited by S. Itoh, J. Matsue and K. Hokamoto |
246 | 1 | 3 | |a International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena |
246 | 1 | 3 | |a ESHP Symposium 2013 |
246 | 1 | 1 | |a ESHP Symposium 2013 |
264 | 1 | |a Stafa-Zurich ; Enfield, NH |b Trans Tech Publications |c [2014] | |
264 | 4 | |c © 2014 | |
300 | |a 1 online resource (275 pages) |b illustrations (some color) | ||
336 | |b txt |2 rdacontent | ||
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490 | 0 | |a Materials science forum |v v. 767 | |
500 | |a "The 4th symposium (ESHP 2014) is organized at Okinawa National College of Technology, Nago, Okinawa, Japan"--Preface | ||
500 | |a Online resource; title from PDF title page (ebrary, viewed November 4, 2013) | ||
505 | 8 | |a Explosion, Shock Wave and High-Energy Reaction Phenomena II; Preface; Table of Contents; Chapter 1: Explosion, Detonation and Shock Wave Propagation; Hot Spots, High Explosives Ignition, and Material Microstructure; Computational Analysis of Ignition in Heterogeneous Energetic Materials; Calculation of Explosion Performance of Pyrotechnic Mixtures by Minimum Free Energy Principle; Estimation of Initial State Dependence of Detonation Velocity Using Unified Form of EOS for PETN; Detonation Velocity Measurement and Numerical Simulation for the System Consisting of Pellet Explosives and Air Gaps | |
505 | 8 | |a High Resolution Numerical Simulation of Shock-to-Detonation Transition of Condensed-Phase ExplosivesExperimental and Numerical Study on the Afterburning Effect of TNT; Manufacturing and Evaluating for the Two Layer/Explosive Materials and their Numerical Simulations; Multiphysics Investigation of Composite Shell Structures Subjected to Water Shock Wave Impact in Petroleum Industry; Study on Behavior of Underwater Shock Wave in Enclosed Vessel; A Computational Simulation for Explosive Ordnance Disposal | |
505 | 8 | |a Study of Unsteady Supersonic Jet Using Shock Tube with Small High-Pressure Chamber with Elliptical CellComputational Simulation of Underwater Shock Wave Propagation Using Smoothed Particle Hydrodynamics; Development of Coupled Fluid-Structure Interaction Code for Explosion Problem; Chapter 2: Dynamic Deformation, Fracture and Processing of Materials; Current Models of Dynamic Deformation and Fracture of Condensed Matter; Energy Kinetics in Explosive Cladding of Dissimilar Metals with Interlayer; Numerical Study on the Influence of Different Anvils on Explosive Welding | |
505 | 8 | |a Numerical Simulation of Underwater Explosive Welding ProcessAspects of Electrodynamic Forming Processes; Study on the Effects of Shock Wave Propagation on Explosive Forming; Explosive Metalworking: Experimental and Numerical Modeling Aspects; High Strain Rate Test of a Steel Plate under Blast Loading from High Explosive; Numerical Analysis on the Damage of the Explosion Pit at Kumamoto University; Estimation of Crater in Reinforced Concrete Wall Caused by Mini-Blasting; Cladding of Titanium and Magnesium Alloy by Explosive Welding Using Underwater Shockwave Technique and Effect on Interface | |
505 | 8 | |a Influence of Gap Length on Collision Angle and Collision Point Velocity of Magnetic Pressure Seam WeldingParallel Seam Welding of Aluminum Sheets by Magnetic Pulse Welding Method with Collision between Metal Jets; Consolidation of Mg2Si Powder Using Shockwave Generated by Projectile Impact; An Investigation on Deburring Technology Using Concentrated Underwater Shock Wave; A Method of Explosive Forming Process for Making a Palm and a Back of Human Hand; Numerical Simulation of Oblique Collision of Flier Plate; Chapter 3: New Applications | |
505 | 8 | |a 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. Propagating explosion and detonation shock waves; the resulting dy | |
650 | 7 | |a Explosions |2 fast | |
650 | 7 | |a Impact |2 fast | |
650 | 7 | |a Shock waves |2 fast | |
650 | 4 | |a Explosions / Congresses | |
650 | 4 | |a Impact / Congresses | |
650 | 4 | |a Shock waves / Congresses | |
650 | 7 | |a TECHNOLOGY & ENGINEERING / Engineering (General) |2 bisacsh | |
650 | 7 | |a TECHNOLOGY & ENGINEERING / Reference |2 bisacsh | |
650 | 4 | |a Explosions |v Congresses |a Shock waves |v Congresses |a Impact |v Congresses | |
655 | 7 | |0 (DE-588)1071861417 |a Konferenzschrift |2 gnd-content | |
700 | 1 | |a Itoh, S. |4 edt | |
700 | 1 | |a Matsue, J. |4 edt | |
700 | 1 | |a Hokamoto, Kazuyuki |4 edt | |
776 | 0 | 8 | |i Erscheint auch als |n Druck-Ausgabe |a International Symposium on Explosion, Shock Wave & High-Energy Reaction Phenomena (4th : 2013 : Okinawa, Japan) |t Explosion, shock wave and high-energy reaction phenomena II. |
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Datensatz im Suchindex
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---|---|
any_adam_object | |
author2 | Itoh, S. Matsue, J. Hokamoto, Kazuyuki |
author2_role | edt edt edt |
author2_variant | s i si j m jm k h kh |
author_corporate | International Symposium on Explosion, Shock Wave & High-Energy Reaction Phenomena < 2013, Nago-shi, Japan> |
author_corporate_role | aut |
author_facet | Itoh, S. Matsue, J. Hokamoto, Kazuyuki International Symposium on Explosion, Shock Wave & High-Energy Reaction Phenomena < 2013, Nago-shi, Japan> |
author_sort | International Symposium on Explosion, Shock Wave & High-Energy Reaction Phenomena < 2013, Nago-shi, Japan> |
building | Verbundindex |
bvnumber | BV043779970 |
collection | ZDB-4-EBA |
contents | Explosion, Shock Wave and High-Energy Reaction Phenomena II; Preface; Table of Contents; Chapter 1: Explosion, Detonation and Shock Wave Propagation; Hot Spots, High Explosives Ignition, and Material Microstructure; Computational Analysis of Ignition in Heterogeneous Energetic Materials; Calculation of Explosion Performance of Pyrotechnic Mixtures by Minimum Free Energy Principle; Estimation of Initial State Dependence of Detonation Velocity Using Unified Form of EOS for PETN; Detonation Velocity Measurement and Numerical Simulation for the System Consisting of Pellet Explosives and Air Gaps High Resolution Numerical Simulation of Shock-to-Detonation Transition of Condensed-Phase ExplosivesExperimental and Numerical Study on the Afterburning Effect of TNT; Manufacturing and Evaluating for the Two Layer/Explosive Materials and their Numerical Simulations; Multiphysics Investigation of Composite Shell Structures Subjected to Water Shock Wave Impact in Petroleum Industry; Study on Behavior of Underwater Shock Wave in Enclosed Vessel; A Computational Simulation for Explosive Ordnance Disposal Study of Unsteady Supersonic Jet Using Shock Tube with Small High-Pressure Chamber with Elliptical CellComputational Simulation of Underwater Shock Wave Propagation Using Smoothed Particle Hydrodynamics; Development of Coupled Fluid-Structure Interaction Code for Explosion Problem; Chapter 2: Dynamic Deformation, Fracture and Processing of Materials; Current Models of Dynamic Deformation and Fracture of Condensed Matter; Energy Kinetics in Explosive Cladding of Dissimilar Metals with Interlayer; Numerical Study on the Influence of Different Anvils on Explosive Welding Numerical Simulation of Underwater Explosive Welding ProcessAspects of Electrodynamic Forming Processes; Study on the Effects of Shock Wave Propagation on Explosive Forming; Explosive Metalworking: Experimental and Numerical Modeling Aspects; High Strain Rate Test of a Steel Plate under Blast Loading from High Explosive; Numerical Analysis on the Damage of the Explosion Pit at Kumamoto University; Estimation of Crater in Reinforced Concrete Wall Caused by Mini-Blasting; Cladding of Titanium and Magnesium Alloy by Explosive Welding Using Underwater Shockwave Technique and Effect on Interface Influence of Gap Length on Collision Angle and Collision Point Velocity of Magnetic Pressure Seam WeldingParallel Seam Welding of Aluminum Sheets by Magnetic Pulse Welding Method with Collision between Metal Jets; Consolidation of Mg2Si Powder Using Shockwave Generated by Projectile Impact; An Investigation on Deburring Technology Using Concentrated Underwater Shock Wave; A Method of Explosive Forming Process for Making a Palm and a Back of Human Hand; Numerical Simulation of Oblique Collision of Flier Plate; Chapter 3: New Applications 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. Propagating explosion and detonation shock waves; the resulting dy |
ctrlnum | (ZDB-4-EBA)ocn868961616 (OCoLC)868961616 (DE-599)BVBBV043779970 |
dewey-full | 620.112 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations |
dewey-raw | 620.112 |
dewey-search | 620.112 |
dewey-sort | 3620.112 |
dewey-tens | 620 - Engineering and allied operations |
format | Electronic eBook |
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genre_facet | Konferenzschrift |
id | DE-604.BV043779970 |
illustrated | Illustrated |
indexdate | 2024-07-10T07:34:54Z |
institution | BVB |
isbn | 9783038262077 3038262072 9783037858264 3037858265 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-029191030 |
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owner_facet | DE-1046 DE-1047 |
physical | 1 online resource (275 pages) illustrations (some color) |
psigel | ZDB-4-EBA ZDB-4-EBA FAW_PDA_EBA |
publishDate | 2014 |
publishDateSearch | 2014 |
publishDateSort | 2014 |
publisher | Trans Tech Publications |
record_format | marc |
series2 | Materials science forum |
spelling | International Symposium on Explosion, Shock Wave & High-Energy Reaction Phenomena < 2013, Nago-shi, Japan> Verfasser aut Explosion, shock wave and high-energy reaction phenomena II selected, peer reviewed papers from the International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena (ESHP Symposium 2013), March 27-29, 2013, Nago, Okinawa, Japan = ESHP Symposium 2013 edited by S. Itoh, J. Matsue and K. Hokamoto International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena ESHP Symposium 2013 Stafa-Zurich ; Enfield, NH Trans Tech Publications [2014] © 2014 1 online resource (275 pages) illustrations (some color) txt rdacontent c rdamedia cr rdacarrier Materials science forum v. 767 "The 4th symposium (ESHP 2014) is organized at Okinawa National College of Technology, Nago, Okinawa, Japan"--Preface Online resource; title from PDF title page (ebrary, viewed November 4, 2013) Explosion, Shock Wave and High-Energy Reaction Phenomena II; Preface; Table of Contents; Chapter 1: Explosion, Detonation and Shock Wave Propagation; Hot Spots, High Explosives Ignition, and Material Microstructure; Computational Analysis of Ignition in Heterogeneous Energetic Materials; Calculation of Explosion Performance of Pyrotechnic Mixtures by Minimum Free Energy Principle; Estimation of Initial State Dependence of Detonation Velocity Using Unified Form of EOS for PETN; Detonation Velocity Measurement and Numerical Simulation for the System Consisting of Pellet Explosives and Air Gaps High Resolution Numerical Simulation of Shock-to-Detonation Transition of Condensed-Phase ExplosivesExperimental and Numerical Study on the Afterburning Effect of TNT; Manufacturing and Evaluating for the Two Layer/Explosive Materials and their Numerical Simulations; Multiphysics Investigation of Composite Shell Structures Subjected to Water Shock Wave Impact in Petroleum Industry; Study on Behavior of Underwater Shock Wave in Enclosed Vessel; A Computational Simulation for Explosive Ordnance Disposal Study of Unsteady Supersonic Jet Using Shock Tube with Small High-Pressure Chamber with Elliptical CellComputational Simulation of Underwater Shock Wave Propagation Using Smoothed Particle Hydrodynamics; Development of Coupled Fluid-Structure Interaction Code for Explosion Problem; Chapter 2: Dynamic Deformation, Fracture and Processing of Materials; Current Models of Dynamic Deformation and Fracture of Condensed Matter; Energy Kinetics in Explosive Cladding of Dissimilar Metals with Interlayer; Numerical Study on the Influence of Different Anvils on Explosive Welding Numerical Simulation of Underwater Explosive Welding ProcessAspects of Electrodynamic Forming Processes; Study on the Effects of Shock Wave Propagation on Explosive Forming; Explosive Metalworking: Experimental and Numerical Modeling Aspects; High Strain Rate Test of a Steel Plate under Blast Loading from High Explosive; Numerical Analysis on the Damage of the Explosion Pit at Kumamoto University; Estimation of Crater in Reinforced Concrete Wall Caused by Mini-Blasting; Cladding of Titanium and Magnesium Alloy by Explosive Welding Using Underwater Shockwave Technique and Effect on Interface Influence of Gap Length on Collision Angle and Collision Point Velocity of Magnetic Pressure Seam WeldingParallel Seam Welding of Aluminum Sheets by Magnetic Pulse Welding Method with Collision between Metal Jets; Consolidation of Mg2Si Powder Using Shockwave Generated by Projectile Impact; An Investigation on Deburring Technology Using Concentrated Underwater Shock Wave; A Method of Explosive Forming Process for Making a Palm and a Back of Human Hand; Numerical Simulation of Oblique Collision of Flier Plate; Chapter 3: New Applications 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. Propagating explosion and detonation shock waves; the resulting dy Explosions fast Impact fast Shock waves fast Explosions / Congresses Impact / Congresses Shock waves / Congresses TECHNOLOGY & ENGINEERING / Engineering (General) bisacsh TECHNOLOGY & ENGINEERING / Reference bisacsh Explosions Congresses Shock waves Congresses Impact Congresses (DE-588)1071861417 Konferenzschrift gnd-content Itoh, S. edt Matsue, J. edt Hokamoto, Kazuyuki edt Erscheint auch als Druck-Ausgabe International Symposium on Explosion, Shock Wave & High-Energy Reaction Phenomena (4th : 2013 : Okinawa, Japan) Explosion, shock wave and high-energy reaction phenomena II. |
spellingShingle | Explosion, shock wave and high-energy reaction phenomena II selected, peer reviewed papers from the International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena (ESHP Symposium 2013), March 27-29, 2013, Nago, Okinawa, Japan = ESHP Symposium 2013 Explosion, Shock Wave and High-Energy Reaction Phenomena II; Preface; Table of Contents; Chapter 1: Explosion, Detonation and Shock Wave Propagation; Hot Spots, High Explosives Ignition, and Material Microstructure; Computational Analysis of Ignition in Heterogeneous Energetic Materials; Calculation of Explosion Performance of Pyrotechnic Mixtures by Minimum Free Energy Principle; Estimation of Initial State Dependence of Detonation Velocity Using Unified Form of EOS for PETN; Detonation Velocity Measurement and Numerical Simulation for the System Consisting of Pellet Explosives and Air Gaps High Resolution Numerical Simulation of Shock-to-Detonation Transition of Condensed-Phase ExplosivesExperimental and Numerical Study on the Afterburning Effect of TNT; Manufacturing and Evaluating for the Two Layer/Explosive Materials and their Numerical Simulations; Multiphysics Investigation of Composite Shell Structures Subjected to Water Shock Wave Impact in Petroleum Industry; Study on Behavior of Underwater Shock Wave in Enclosed Vessel; A Computational Simulation for Explosive Ordnance Disposal Study of Unsteady Supersonic Jet Using Shock Tube with Small High-Pressure Chamber with Elliptical CellComputational Simulation of Underwater Shock Wave Propagation Using Smoothed Particle Hydrodynamics; Development of Coupled Fluid-Structure Interaction Code for Explosion Problem; Chapter 2: Dynamic Deformation, Fracture and Processing of Materials; Current Models of Dynamic Deformation and Fracture of Condensed Matter; Energy Kinetics in Explosive Cladding of Dissimilar Metals with Interlayer; Numerical Study on the Influence of Different Anvils on Explosive Welding Numerical Simulation of Underwater Explosive Welding ProcessAspects of Electrodynamic Forming Processes; Study on the Effects of Shock Wave Propagation on Explosive Forming; Explosive Metalworking: Experimental and Numerical Modeling Aspects; High Strain Rate Test of a Steel Plate under Blast Loading from High Explosive; Numerical Analysis on the Damage of the Explosion Pit at Kumamoto University; Estimation of Crater in Reinforced Concrete Wall Caused by Mini-Blasting; Cladding of Titanium and Magnesium Alloy by Explosive Welding Using Underwater Shockwave Technique and Effect on Interface Influence of Gap Length on Collision Angle and Collision Point Velocity of Magnetic Pressure Seam WeldingParallel Seam Welding of Aluminum Sheets by Magnetic Pulse Welding Method with Collision between Metal Jets; Consolidation of Mg2Si Powder Using Shockwave Generated by Projectile Impact; An Investigation on Deburring Technology Using Concentrated Underwater Shock Wave; A Method of Explosive Forming Process for Making a Palm and a Back of Human Hand; Numerical Simulation of Oblique Collision of Flier Plate; Chapter 3: New Applications 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. Propagating explosion and detonation shock waves; the resulting dy Explosions fast Impact fast Shock waves fast Explosions / Congresses Impact / Congresses Shock waves / Congresses TECHNOLOGY & ENGINEERING / Engineering (General) bisacsh TECHNOLOGY & ENGINEERING / Reference bisacsh Explosions Congresses Shock waves Congresses Impact Congresses |
subject_GND | (DE-588)1071861417 |
title | Explosion, shock wave and high-energy reaction phenomena II selected, peer reviewed papers from the International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena (ESHP Symposium 2013), March 27-29, 2013, Nago, Okinawa, Japan = ESHP Symposium 2013 |
title_alt | International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena ESHP Symposium 2013 |
title_auth | Explosion, shock wave and high-energy reaction phenomena II selected, peer reviewed papers from the International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena (ESHP Symposium 2013), March 27-29, 2013, Nago, Okinawa, Japan = ESHP Symposium 2013 |
title_exact_search | Explosion, shock wave and high-energy reaction phenomena II selected, peer reviewed papers from the International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena (ESHP Symposium 2013), March 27-29, 2013, Nago, Okinawa, Japan = ESHP Symposium 2013 |
title_full | Explosion, shock wave and high-energy reaction phenomena II selected, peer reviewed papers from the International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena (ESHP Symposium 2013), March 27-29, 2013, Nago, Okinawa, Japan = ESHP Symposium 2013 edited by S. Itoh, J. Matsue and K. Hokamoto |
title_fullStr | Explosion, shock wave and high-energy reaction phenomena II selected, peer reviewed papers from the International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena (ESHP Symposium 2013), March 27-29, 2013, Nago, Okinawa, Japan = ESHP Symposium 2013 edited by S. Itoh, J. Matsue and K. Hokamoto |
title_full_unstemmed | Explosion, shock wave and high-energy reaction phenomena II selected, peer reviewed papers from the International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena (ESHP Symposium 2013), March 27-29, 2013, Nago, Okinawa, Japan = ESHP Symposium 2013 edited by S. Itoh, J. Matsue and K. Hokamoto |
title_short | Explosion, shock wave and high-energy reaction phenomena II |
title_sort | explosion shock wave and high energy reaction phenomena ii selected peer reviewed papers from the international symposium on explosion shock wave and high energy reaction phenomena eshp symposium 2013 march 27 29 2013 nago okinawa japan eshp symposium 2013 |
title_sub | selected, peer reviewed papers from the International Symposium on Explosion, Shock Wave and High Energy Reaction Phenomena (ESHP Symposium 2013), March 27-29, 2013, Nago, Okinawa, Japan = ESHP Symposium 2013 |
topic | Explosions fast Impact fast Shock waves fast Explosions / Congresses Impact / Congresses Shock waves / Congresses TECHNOLOGY & ENGINEERING / Engineering (General) bisacsh TECHNOLOGY & ENGINEERING / Reference bisacsh Explosions Congresses Shock waves Congresses Impact Congresses |
topic_facet | Explosions Impact Shock waves Explosions / Congresses Impact / Congresses Shock waves / Congresses TECHNOLOGY & ENGINEERING / Engineering (General) TECHNOLOGY & ENGINEERING / Reference Explosions Congresses Shock waves Congresses Impact Congresses Konferenzschrift |
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