Itoh / Hokamoto | Explosion, Shock Wave and Hypervelocity Phenomena in Materials II | Sonstiges | 978-3-908453-88-8 | sack.de

Sonstiges, Englisch, 388 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g

Itoh / Hokamoto

Explosion, Shock Wave and Hypervelocity Phenomena in Materials II

Sonstiges, Englisch, 388 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g

ISBN: 978-3-908453-88-8
Verlag: Trans Tech Publications


Volume is indexed by Thomson Reuters CPCI-S (WoS).
The objective of this special-topic volume was to disseminate work on current trends in Explosion, Shock Wave and Hypervelocity Phenomena in Materials.
Itoh / Hokamoto Explosion, Shock Wave and Hypervelocity Phenomena in Materials II jetzt bestellen!

Weitere Infos & Material


Reconsideration of the So-Called von Neumann Paradox in the Reflection of a Shock Wave over a WedgeDevelopment of a Large Diameter Diaphragmless Shock Tube for Gas-Dynamic Laser StudiesBehaviors of High Explosive near the Critical Conditions for Shock Initiation of Detonation Experimental Determination of Shock Hugoniot for Water, Castor Oil, and Aqueous Solutions of Sodium Chloride, Sucrose and GelatinDynamic Response of a Steel Pipe to Internal Blast LoadingDesign and Experiment of Compact Projectile Accelerator Driven by ExplosivesDetonation Behaviors of Nitromethane with Various Initiating Shock PressureHigh-Speed Photographic Observation of Shock-Pressure Pulses in Water Induced by Laser Energy Absorption at Roughened SurfaceBehaviour of Cellular Structures under Impact Loading a Computational Study Numerical Studies of Explosive Welding by SPHNumerical Simulation of Shaped Charges Using the SPH Solver: Jet Formation and Target PenetrationNumerical Analysis of Projectile-Launch Tube Wall Friction Effects on Projectile Acceleration in Single-Stage GunNumerical Simulation of Underwater Explosive Compaction Process for Compaction of Tungsten PowderPlate Response to Buried Charge ExplosionNumerical Prediction on Cookoff Explosion of Explosive under Strong ConfinementMulti-Physics Modeling Based on Combustion of Energetic MaterialsDiameter Effect on Detonation Velocity of Ammonium Nitrate and Activated Carbon MixturesDetonation Velocity and Pressure of Ammonium Nitrate and Activated Carbon MixturesHot Explosive Compaction of Udimet 700 PowderExplosive Welding of ZrTiCuNiBe Bulk Metallic Glass to Crystalline Metallic PlatesShock Wave Chemical Reactions; Synthesis of Carbon NitridesProperties of Cubic Si3N4 Obtained by Shock SynthesisNovelties in Physics of Explosive Welding and Powder CompactionProcessing of Advanced Materials Using Conventional and Shock Techniques Explosive Cladding for ITER ComponentsA DTA Study on HVOF Thermally Sprayed WC?M CoatingsStudy of Phase Transformations in Heat Treatment of HVOF Thermally Sprayed WC?17Co CoatingOn Micro Forming by Hydro Spark Forming MethodControl of Onset of Buckling Lobe in Axial Impact of Square TubeDependence of Blast Attenuation on Weight of Barrier MaterialsUnderground Space Construction by Explosive Loading in a BoreholeThe Sterilization of Dry Powdered Foods by Successive ImpactsStudy on the Relationship between Some Foods and Underwater Shock Wave Using the Explosion of the Detonating FuseResearch on Sessile Organism Removal from Metal Using the Underwater Shock WaveInfluence of Inert Copper and Silicon Carbide Inserts on Process of Detonation Transmission through WaterAnalysis of Explosion Combustion Phenomenon with Ammonium NitrateA Safe Use of Explosives by Parting into a Small Amount of PowderA Study on Shock Energy for Concrete Destruction Using Underwater Shock WaveThe Study about ?Cullet? Generation Technique and Application for Recycling System by Using Underwater ShockwavesMechanical Changes in Materials Caused by Explosive Precompression Shock Waves and the Effects on Fragmentation of Exploding CylindersBasic Study for Crushing of Ice by Underwater Shock WaveEffect on Aqua Quenching of Spring Steel (JIS SUP 9)New Impact Testing Methods for Sheet Metals Based on SHPB TechniqueUltrasonic Nondestructive Approach on Fiber Orientation Inspection in CFRP Composite LaminatesNondestructive Evaluation of Rayleigh Pitch-Catch Contact Ultrasound Waves on Impacted-Damaged CompositesObservation of High Velocity Oblique Collision of Titanium and Stainless Steel Plates by Using Gas GunMicro Structural Studies On Explosively Clad Cu/Ss, Br/Ss and Al/Ss PlatesA Study of the Weld Zones on Explosive Cladded Titan12/Ss 304 L PlatesExplosion Joining of Magnesium Alloy AZ31 and AluminumUtilization of Technology of Explosive Welding at Development of Multilayer Ballistic Resistant MaterialsUnderwater Explosive Welding of Thin Magnesium Plate onto some Metal PlatesNumerical Simulation on Explosive Welding Process Using Reflected Underwater Shock WaveCollection of Product Synthesized Using Extremely High Impulsive Pressure GeneratorAdvanced Materials Synthesis and Microstructural Characterization Using Explosive at Sojo UniversityInvestigation of Jet Formation with Overdriven Detonation in High Density ExplosiveShock Compaction of WC-Co Powder in Metallic TubeOptimal Design of Shock Compaction Device A Study on the Consolidation of Cu, Ni / Graphite Powder Using Shock Compaction MethodMicrostructure Modification of Magnesium Alloys by High Current ElectropulsingThe Formation of Onions at Shock-Wave Loading of GraphiteThe Industrial Applications of Underwater Shock Wave


Ihre Fragen, Wünsche oder Anmerkungen
Vorname*
Nachname*
Ihre E-Mail-Adresse*
Kundennr.
Ihre Nachricht*
Lediglich mit * gekennzeichnete Felder sind Pflichtfelder.
Wenn Sie die im Kontaktformular eingegebenen Daten durch Klick auf den nachfolgenden Button übersenden, erklären Sie sich damit einverstanden, dass wir Ihr Angaben für die Beantwortung Ihrer Anfrage verwenden. Selbstverständlich werden Ihre Daten vertraulich behandelt und nicht an Dritte weitergegeben. Sie können der Verwendung Ihrer Daten jederzeit widersprechen. Das Datenhandling bei Sack Fachmedien erklären wir Ihnen in unserer Datenschutzerklärung.