Heat transfers in polymer composite materials : forming processes

This book addresses general information, good practices and examples about thermo-physical properties, thermo-kinetic and thermo-mechanical couplings, instrumentation in thermal science, thermal optimization and infrared radiation.

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Bibliographic Details
Other Authors: Boyard, Nicolas, (Editor)
Format: eBook
Language: English
Published: London : Hoboken, N.J. : ISTE ; John Wiley & Sons, Inc., 2016.
Series: Mechanical engineering and solid mechanics series.
Subjects:
ISBN: 9781523110810
1523110813
9781119116288
1119116287
9781119285090
1119285097
9781119285083
1119285089
9781848217614
1848217617
Physical Description: 1 online resource (xvii, 429 pages) : illustrations

Cover

Table of contents

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245 0 0 |a Heat transfers in polymer composite materials :  |b forming processes /  |c edited by Nicolas Boyard. 
264 1 |a London :  |b ISTE ;  |a Hoboken, N.J. :  |b John Wiley & Sons, Inc.,  |c 2016. 
300 |a 1 online resource (xvii, 429 pages) :  |b illustrations 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
490 1 |a Mechanical engineering and solid mechanics series 
500 |a Previously issued in print: 2015. 
504 |a Includes bibliographical references and index. 
505 0 |a Table of Contents; Title; Copyright; Preface; 1 Introduction to Heat Transfer During the Forming of Organic Matrix Composites; 1.1. Introduction; 1.2. Examples of injection of short fiber reinforced composites; 1.3. Injection on continuous fiber reinforcements; 1.4. Conclusion: toward a controlled processing; 1.5. Bibliography; 2 Experimental Determination and Modeling of Thermophysical Properties; 2.1. Measurement of specific volume and shrinkage; 2.2. Determination of specific heat capacity of resin and composites; 2.3. Thermal conductivity: a tricky task ... ; 2.4. Conclusions. 
505 8 |a 2.5. Bibliography3 Experimental Determination and Modeling of Transformation Kinetics; 3.1. Introduction; 3.2. What are the most suitable devices to analyze a reaction rate?; 3.3. Modeling of the cure kinetics of thermosetting resins; 3.4. Overall crystallization kinetics of semi-crystalline thermoplastics; 3.5. Concluding remarks; 3.6. Bibliography; 4 Phase Change Kinetics within Process Conditions and Coupling with Heat Transfer; 4.1. Introduction; 4.2. Flow-induced crystallization: experimental observations; 4.3. Flow-induced crystallization: modeling. 
505 8 |a 4.4. Effect of the composite components4.5. Concluding remarks; 4.6. Bibliography; 5 From the Characterization and Modeling of Cure-Dependent Properties of Composite Materials to the Simulation of Residual Stresses; 5.1. Introduction; 5.2. Origin of residual stress; 5.3. Determination of composite properties; 5.4. Modeling of residual stress; 5.5. Conclusion; 5.6. Bibliography; 6 Heat Transfer in Composite Materials and Porous Media: Multiple-Scale Aspects and Effective Properties; 6.1. Introduction; 6.2. Effective thermal conductivity; 6.3. Local-equilibrium model and thermal dispersion. 
505 8 |a 6.4. Local equilibrium versus local non-equilibrium models6.5. Various extensions; 6.6. Conclusions; 6.7. Bibliography; 7 Thermal Optimization of Forming Processes; 7.1. Context of optimization; 7.2. Heat transfer: optimization lever; 7.3. Definition of the optimization criterion; 7.4. Problem modeling; 7.5. Numerical optimization methods; 7.6. Example of process optimization: determination of optimal heat flux setpoint; 7.7. Optimal design of molds; 7.8. Conclusions and outlook; 7.9. Bibliography; 8 Modeling of Thermoplastic Welding; 8.1. Introduction; 8.2. Physics of thermoplastic welding. 
505 8 |a 8.3. Linear viscoelasticity to quantify the macromolecular diffusion8.4. Application to continuous welding of composite tape; 8.5. Application to ultrasonic welding; 8.6. Conclusion; 8.7. Acknowledgments; 8.8. Bibliography; 9 Multiphysics for Simulation of Forming Processes; 9.1. Introduction; 9.2. Multiscale, multiphysics and multidomain modeling; 9.3. Advanced numerical techniques and macroscale simulations; 9.4. Determination of equivalent properties and microscale simulations; 9.5. Conclusions; 9.6. Bibliography. 
506 |a Plný text je dostupný pouze z IP adres počítačů Univerzity Tomáše Bati ve Zlíně nebo vzdáleným přístupem pro zaměstnance a studenty 
520 |a This book addresses general information, good practices and examples about thermo-physical properties, thermo-kinetic and thermo-mechanical couplings, instrumentation in thermal science, thermal optimization and infrared radiation. 
590 |a Knovel  |b Knovel (All titles) 
650 0 |a Polymeric composites. 
650 0 |a Heat  |x Transmission. 
655 7 |a elektronické knihy  |7 fd186907  |2 czenas 
655 9 |a electronic books  |2 eczenas 
700 1 |a Boyard, Nicolas,  |e editor. 
776 0 8 |i Print version:  |z 9781848217614 
776 0 8 |i Print version:  |t Heat transfers in polymer composite materials  |z 9781848217614  |w (OCoLC)907183792 
830 0 |a Mechanical engineering and solid mechanics series. 
856 4 0 |u https://proxy.k.utb.cz/login?url=https://app.knovel.com/hotlink/toc/id:kpHTPCMFP3/heat-transfer-in?kpromoter=marc  |y Full text