Computational Modeling of Intelligent Soft Matter: Shape Memory Polymers and Hydrogels
Autor Mostafa Baghani, Majid Baniassadi, Yves Rémonden Limba Engleză Paperback – 21 feb 2023
- Introduces constitutive models based on continuum thermodynamics for intelligent soft materials
- Presents calibration methods for identifying material model parameters as well as finite element implementation of the featured models
- Allows readers to solve practical problems requiring thermomechanical responses from these materials as well as the design and analysis of real-world structures made of them
Preț: 899.39 lei
Preț vechi: 1179.48 lei
-24% Nou
Puncte Express: 1349
Preț estimativ în valută:
172.18€ • 177.07$ • 142.84£
172.18€ • 177.07$ • 142.84£
Carte tipărită la comandă
Livrare economică 10-24 februarie
Preluare comenzi: 021 569.72.76
Specificații
ISBN-13: 9780443194207
ISBN-10: 0443194203
Pagini: 382
Dimensiuni: 152 x 229 mm
Greutate: 0.51 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0443194203
Pagini: 382
Dimensiuni: 152 x 229 mm
Greutate: 0.51 kg
Editura: ELSEVIER SCIENCE
Public țintă
Materials science and mechanical engineering researchers and graduate students in the field of soft materials modeling, or constitutive modeling of soft smart materialsProfessional materials scientists and engineers
Cuprins
1. Intelligent Soft Matters: Need for Numerical Modeling in Design and Analysis 2. A Detailed Review on Constitutive Models for Thermo-Responsive Shape Memory Polymers (SMPs) 3. A Review on Constitutive Modeling of pH-Sensitive Hydrogels 4. Experiments on Shape Memory Polymers: Methods of Production, Shape Memory Effect Parameters, and Application 5. Shape Memory Polymers: Constitutive Modeling, Calibration, and Simulation 6. Shape Memory Polymer Composites: Nano-Composites and Corrugated Structures 7. Equiilibrium and Transient Swelling of Soft and Tough pH-Sensitive Hydrogels: Constitutive Modeling and FEM Implementation 8. Structural Analysis of Smart Hydrogels: Analytical Solutions and Finite Element Modeling 9. Structural Analysis of Different Smart Hydrogel Microvalves: The Effect of Fluid-Structure Interaction Modeling