Bending behavior of thermoplastic composite sheets : viscoelasticity and temperature dependency in the draping process / Steffen Ropers.
By: Ropers, Steffen,, autor
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E-bookSeries: (AutoUni-Schriftenreihe ; Band 99).Publisher: Wiesbaden, Germany : Springer, 2017Description: 1 recurso en línea (xxiii, 93 páginas) : ilustraciones (algunas a color).ISBN: 365817594X; 9783658175948.Subject: Materiales compuestos
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Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | TA418.9.C6 R674 2017 EB (Browse shelf(Opens below)) | Acceso electrónico | eBook.20023163 |
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| TA418.9.C6 M434 2016 EB Mechanics of composite and multi-functional materials. proceedings of the 2016 Annual Conference on Experimental and Applied Mechanics Volume 7 : | TA418.9.C6 M434 2018 EB Mechanics of Composite and Multi-functional Materials, Volume 6 Proceedings of the 2017 Annual Conference on Experimental and Applied Mechanics | TA418.9.C6 M537 2018 EB Micromechanics and Nanomechanics of Composite Solids | TA418.9.C6 R674 2017 EB Bending behavior of thermoplastic composite sheets : viscoelasticity and temperature dependency in the draping process | TA418.9.C6 R845 2017 EB On the time and temperature dependent behaviour of laminated amorphous polymers subjected to low-velocity impact | TA418.9.F85 2021 EB Analytical or Semi-analytical Solutions of Functionally Graded Material Structures | TA418.9.F85 M343 2017 EB Functionally graded materials |
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Incluye referencias bibliográficas
Thermoplastic Prepregs -- Draping Simulation of Thermoplastic Prepregs -- Bending Characterization of Textile Composites -- Modeling of Bending Behavior.
Within the scope of this work, Steffen Ropers evaluates the viscoelastic and temperature-dependent nature of the bending behavior of thermoplastic composite sheets in order to further enhance the predictability of the draping simulation. This simulation is a useful tool for the development of robust large scale processes for continuously fiber-reinforced polymers (CFRP). The bending behavior thereby largely influences the size and position of wrinkles, which are one of the most common processing defects for continuously fiber-reinforced parts. Thus, a better understanding of the bending behavior of thermoplastic composite sheets as well as an appropriate testing method along with corresponding material models contribute to a wide-spread application of CFRPs in large scale production. Contents Thermoplastic Prepregs Draping Simulation of Thermoplastic Prepregs Bending Characterization of Textile Composites Modeling of Bending Behavior Target Groups Researchers and students in the field of polymer, lightweight, computational, or mechanical engineering Practitioners in the automotive industry, polymer processing, lightweight design, computational aided engineering (CAE) About the Author Steffen Ropers studied mechanical engineering at the University of Erlangen-Nuremberg, Germany, and the University of Wisconsin-Madison, U.S., with majors in polymer engineering and manufacturing technology. He is currently employed at the materials and processes department of a notable automotive OEM. <.
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