Chen / Zhou | Explosion, Shock Wave and High-Strain-Rate Phenomena V | Sonstiges | 978-3-0357-2078-5 | sack.de

Sonstiges, Englisch, Band Volume 910, 194 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g

Reihe: Materials Science Forum

Chen / Zhou

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

5th ESHP
Erscheinungsjahr 2018
ISBN: 978-3-0357-2078-5
Verlag: Trans Tech Publications

5th ESHP

Sonstiges, Englisch, Band Volume 910, 194 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g

Reihe: Materials Science Forum

ISBN: 978-3-0357-2078-5
Verlag: Trans Tech Publications


The 5th symposium (ESHP 2016) was organized at Beijing Institute of Technology, Beijing, China. Same as a previous ESHP series, theoretical, numerical and experimental researches on impact of explosion, shock waves and high-strain-rate phenomena on materials and research of related technologies for materials processing were the main topics of the symposium. We hope the proceedings of the symposium promoted the dissemination of knowledge and establishment of collaboration in this important area of materials sciences.
Chen / Zhou Explosion, Shock Wave and High-Strain-Rate Phenomena V jetzt bestellen!

Autoren/Hrsg.


Weitere Infos & Material


Experimental Study on the Shock Consolidation of Ti+Si PowdersWire Mesh/Ceramic Particle Reinforced Aluminium Based Composite Using Explosive CladdingMetallurgical and Mechanical Properties of Wire-Mesh Reinforced Dissimilar Explosive CladdingComparison between Simple Seam Welding and Adjacent Parallel Seam Welding by Magnetic Pulse Sheet-Welding MethodImpact Joining of Similar and Dissimilar Metal Plates at their EdgesDetonation Synthesis of TiO2/Na2Ti6O13 PowdersEffect of Post Weld Heat Treatment on Al 5052-SS 316 Explosive Cladding with Copper InterlayerProduction of Wire Mesh Reinforced Aluminium Composites through Explosive CompactionProduction of AlN Nanopowders by Electrical Wire Explosion in Liquid NitrogenExperimental Study on the Explosive Welding of Thin Al/Cu Composite PlatesAdvanced Manufacturing from Macro- to Nanoscale: Impact and Shock LoadingInvestigation on Microvoid Nucleation of High Temperature Nickel Based Superalloy under Thermal ShockNumerical Simulation of Electrical Discharge Characteristics Induced by Underwater Wire ExplosionBlast Wave Mitigation from the Straight Tube by Using Water Part II - Numerical SimulationA Basic Study on Shock Resistant Design for Explosion PitBasic Research on Explosive Forming of Magnesium Alloy PlateNumerical Analysis of Behavior on Opposing Unsteady Supersonic Jets in a Flow Field with ShieldsProjectile Impact Testing Aluminum Corrugated Core Composite Sandwiches Using Aluminum Corrugated Projectiles: Experimental and Numerical InvestigationBending Collapse Behavior of Tubular Structure under ImpactInfluence of Axial Length on Axially Compressed Aluminum Polygonal TubeEffect of Graphene Nanoplatelets Content on Dynamic Mechanical Property of GNPs/Ti CompositesDamage Characteristics of Dynamically Induced Incipient Spall in Ultrapure AluminumStudy of Interaction between Unsteady Supersonic Jet and Vortex Rings Discharged from Elliptical CellObservation of Supersonic Jet Using Small Volume High-Pressure Shock TubeBlast Wave Mitigation from the Straight Tube by Using Water Part I - Small Scale ExperimentEffect of Heat Treatment on the Microstructure and Dynamic Behavior of Ti-10V-2Fe-3Al AlloyDynamic Response Analysis of Mortar Block under Blast Loading Using Digital Image CorrelationUsing Underwater Shockwaves for the Development of Processing Devices for Plant MaterialsExperimental Verification of the Softening of the Pork Using Underwater Shock Waves Generated by Wire Electrical Discharges


Eds. Peng Wan Chen and Qiang Zhou


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.