Thermoforming: Identification of Process-Relevant Ranges for Strain, Strain Rate, Cooling Rate, and Degree of Crystallinity Through Preliminary Simulations

Author:

Kulkarni Sameer,Loos Klara,Lion Alexander,Johlitz Michael

Publisher

Springer International Publishing

Reference20 articles.

1. Astrom BT (1997) Thermoplastic composite sheet forming: materials and manufacturing techniques. In: Bhattacharyya D (ed) Composite sheet forming, 1st edn. Elsevier Science BV, Amsterdam

2. Bayer AG (2001) Bayer: Thermoformen von Platten aus Polyamid 6 erstmals möglich. chemie.de. https://www.chemie.de/news/1195/bayer-thermoformen-von-platten-aus-polyamid-6-erstmals-moeglich.html. Accessed 20 Feb 2022

3. Doebrich O, Gereke T, Diestel O, Krzywinski S, Cherif C (2014) Decoupling the bending behavior and the membrane properties of finite shell elements for a correct description of the mechanical behavior of textiles with a laminate formulation. J Ind Text 47(1):70–84

4. Dörr D, Gergelyc R, Ivanovd S, Kärgera L, Henninga F, Hrymakd A (2020) On the applicability of thermoforming characterization and simulation approaches to glass mat thermoplastic composites. Procedia Manuf 47:118–125

5. Erich NETZSCH GmbH and Co. Holding KG (2001) Crystallinity/degree of crystallinity. https://analyzing-testing.netzsch.com/en/training-know-how/glossary/crystallinity-degree-of-crystallinity. Accessed 10 May 2022

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