Karama | Multi-Scales Behaviour of Materials | Sonstiges | 978-3-03795-155-2 | sack.de

Sonstiges, Englisch, Band Volume 146, 250 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g

Reihe: Applied Mechanics and Materials

Karama

Multi-Scales Behaviour of Materials

Sonstiges, Englisch, Band Volume 146, 250 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g

Reihe: Applied Mechanics and Materials

ISBN: 978-3-03795-155-2
Verlag: Trans Tech Publications


Volume is indexed by Thomson Reuters BCI (WoS).
This volume focuses on the development of methods, for predicting the behaviour of materials, so as to be able to design materials having specific properties. This requires a multi-scale material modeling framework that is based upon the fundamental laws of physics and links the electronic modeling hierarchy all the way from the atomistic and mesoscale modeling regimes up to macroscopic material behaviour. It is evident that such a framework cannot be based upon rigid formal parameterizations alone, but must emerge from a detailed understanding of the mechanistic behaviour of materials, a profound knowledge of material properties and metallurgical trends, and must take account of the processing of materials as the basis of dynamic structure/property relationships.
Karama Multi-Scales Behaviour of Materials jetzt bestellen!

Autoren/Hrsg.


Weitere Infos & Material


Micro-Scale Modeling of Carbon-Fiber Reinforced Thermoplastic MaterialsCellulose Whiskers Micro-Fibers Effect in the Mechanical Proprieties of PP and PLA Composites Fibers Obtained by Spinning ProcessBehavior of Reinforced Concrete Beams by Confined Oblique RodsBehavior of the Composite Lightweight ConcreteEffects of Ageing in Marine Environment on Glass Fibre/Unsaturated Polyester CompositeStudy of Mechanical Behavior of Concrete in Direct Tensile Fiber ChipsEffect of Artificial Defect and Mean Shear Stress on Torsional Fatigue BehaviourOptimizing Residual Stress Profile Induced by Laser Shock Peening Using DOE TechniqueToward Optimal Updating Time Inspection Based on Reliability Approach of Fatigue Crack PropagationImpact and Sliding Wear Resistance of Hadfield and Rail SteelPredicting the Reliability of Aligned Carbon Nanotube Bundles in Mechanical StructuresSafety and Reliability of Carbon Nanotubes in Nanoactuator ApplicationCorrelating Piezoelectric Polymer/Carbon Nanotubes Nanocomposite Strain Sensor with Reliability and Optimization ToolsPerformance and Analysis of Concrete in Sewer Environment: Anisotropy of DamageEpoxy-Layered Silicate and Epoxy MWCNTs NanocompositesDesign and Finite Element Modal Analysis of 48m Composite Wind Turbine BladeResidual Stresses in a Ceramic-Metal CompositeImpact Depth on Glass Surface Caused by Sand ParticlesEffect of Hydrogen on Mechanical Properties of Pipeline API 5L X70 Steel


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.