Cantitate/Preț
Produs

Hybrid Atomic-Scale Interface Design for Materials Functionality

Editat de Ajit K. Roy
en Limba Engleză Paperback – 11 mar 2021
Hybrid Atomic-Scale Interface Design for Materials Functionality covers a broad range of atomistic, meso and macro scale computational methodologies, including multiphase (hybrid) materials constructs for tailoring structural, thermal and electrical properties. As future materials are expected to perform with increasing efficiency in complex and dynamic environments hybrid materials design, in contrast to monolithic concepts, they are a cost-effective alternative. Taking materials hybridization at smaller scale, even at atomic scale, offers exceedingly high-payoff opportunities for optimizing materials functionality at reduced material consumption and even reduced qualification costs (eliminates many costly component and system level qualification tests).

  • Presents computational methodologies for materials hybridization and interface design at the atomic scale
  • Covers materials interface design (atomic configuration), a key component to optimize and achieve performance metrics
  • Helps readers with material selectivity and in the materials design phase of any product design
Citește tot Restrânge

Preț: 106407 lei

Preț vechi: 140523 lei
-24% Nou

Puncte Express: 1596

Preț estimativ în valută:
20362 21422$ 16859£

Carte tipărită la comandă

Livrare economică 07-21 ianuarie 25

Preluare comenzi: 021 569.72.76

Specificații

ISBN-13: 9780128191170
ISBN-10: 0128191171
Pagini: 280
Ilustrații: 220 illustrations (40 in full color)
Dimensiuni: 191 x 235 mm
Greutate: 0.49 kg
Editura: ELSEVIER SCIENCE

Public țintă

graduate students or senior undergraduates majoring in materials science and engineering

Cuprins

1. Introduction to hybrid materials design issues and challenges for micro devices 2. Molecular Dynamics (MD) methodologies for predicting thermal transport in aerospace (cross-linked) polymers 3. Electron transport through nanomaterials interfaces 4. Wave Packets MD 5. Molecular Mechanics (MM) for materials interface strength 6. Kapitza resistance in lattice structures 7. Porous hybrid nano materials: processing, characterization and materials properties 8. Nano-porous graphitic carbon for super capacitors 9. Nano-porous carbon for hydrogen storage 10. Laser induced nano materials processing 11. Nano materials interface strength measurements 12. Combined thermal-mechanical micro measurement