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Thermoforming Modeling and Simulation: A Multiphysics Approach: Multiphysics: Advances and Applications

Editat de Fouad Erchiqui, Hassan Khawaja, Mojtaba Moatamedi, Hamid Kaddami
en Limba Engleză Paperback – 2026
Thermoforming Modeling and Simulation: A Multiphysics Approach concentrates on the modeling and optimization of thermoforming, as well as identifying the structural behavior of thermoplastics used for thermoforming. The book demonstrates the expertise gained through industrial and academic projects in technical transfer. It also illustrates the research and development skills in experimental and numerical modeling of thermoforming. The problem of identifying laws of behavior from experimental data (rheological or mechanical tests in large deformations), using algorithms such as neural networks, is also addressed. Through its multiphysics content, this book is helpful for researchers, teachers and industrialists interested in new advances in thermoforming (characterization of materials, modeling and optimization).


  • Introduces the use of artificial intelligence for viscoelastic and hyperelastic identification of thermoplastics in large deformations
  • Presents integrated thermoforming modeling (including fluid-structure coupling)
  • Models the effects of mold temperature on cooling and in degrees of crystallinity induced in semi-crystalline polymers
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Specificații

ISBN-13: 9780443238420
ISBN-10: 0443238421
Pagini: 380
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Multiphysics: Advances and Applications


Cuprins

Part I: Characterization of Materials in Thermoforming 1. Characterization of the Sagging of High-Density Polyethylene Membranes under the Combined Effect of the Temperature and the Gravity for Thermoforming Applications 2. Characterization of Polymeric Membrane under Large Deformations Using Fluid-structure Coupling 3. Neuronal Networks for Characterization of Viscoelastic Polymers for Thermoforming Applications to Abs and Hips 4. Reliability of Free Inflation and Dynamic Mechanics Tests on the Prediction of the Behavior of the PMSQ-HDPE Nanocomposite for Thermoforming Applications 5. Deployment of a Neo-Hookean Membrane: Application to Process Forming Part II: Numerical Modeling in Thermoforming 6. Energy efficiency analysis of the radiative transfer of a real medium in thermoforming 7. An Orthotropic Hyperelastic Constitutive Law with Damage for Continuous Fiber Reinforced Thermoplastic Composites: Formulation, Experimental Study and Numerical Simulation 8. Finite Element Analysis of Orthotropic Material for Thermoforming a Thermoplastic Helmet 9. Effect of the cooling temperature of a PET sheet, beforehand heated by infrared radiation, on the crystallinity 10. SPH and FEM Investigation of Hydrodynamic Impact Problems: Application to Forming analysis 11. Fluid Solid Interaction Simulation of CFRP Shell Structure 12. A Mixed SPH-FEM Formulation for FSI Simulations 13. Experimental and Theoretical Study of the Thermoformability of Industrial Polymers for Thermoforming Applicationing Application Part III: Optimization in Thermoforming 14. Non-linear Threshold Algorithm-based Solution for Infrared Heating Optimization in Thermoforming Process 15. Application of Genetic and Simulated Annealing Algorithms for Optimization of Infrared Heating Stage in Thermoforming Process Part IV: New Advances in Thermoforming and Applications 16. Comparative Study on the Use of Infrared and Microwave Radiation in the Heating Stage in Thermoforming of Plastic-wood Composite Sheets 17. Design and Numerical Modeling of the Thermoforming Process of a WPC-based Formwork Structure 18. Investigation on the Use of Structural PMSQ-thermoplastic Nanocomposite for the Thermoforming of NACA Profile for UAVs 19. Thermodynamic Approach for Finite Element Analysis of K-BKZ Polymer Sheet with Respect to Thermoforming Using an Explicit Dynamic or Quasi-static Procedure 20. Thermoplastic Composite Fabrication using Commingling Techniques