{"doi":"10.4028/www.scientific.net/KEM.883.49","language":[{"iso":"eng"}],"_id":"30689","citation":{"bibtex":"@article{Gröger_Hornig_Hoog_Gude_2021, title={Temperature dependent modelling of fibre-reinforced thermoplastic organo-sheet material for forming and joining process simulations}, volume={883 KEM}, DOI={10.4028/www.scientific.net/KEM.883.49}, journal={Key Engineering Materials}, author={Gröger, B. and Hornig, A. and Hoog, A. and Gude, M.}, year={2021}, pages={49} }","apa":"Gröger, B., Hornig, A., Hoog, A., & Gude, M. (2021). Temperature dependent modelling of fibre-reinforced thermoplastic organo-sheet material for forming and joining process simulations. Key Engineering Materials, 883 KEM, 49. https://doi.org/10.4028/www.scientific.net/KEM.883.49","mla":"Gröger, B., et al. “Temperature Dependent Modelling of Fibre-Reinforced Thermoplastic Organo-Sheet Material for Forming and Joining Process Simulations.” Key Engineering Materials, vol. 883 KEM, 2021, p. 49, doi:10.4028/www.scientific.net/KEM.883.49.","ieee":"B. Gröger, A. Hornig, A. Hoog, and M. Gude, “Temperature dependent modelling of fibre-reinforced thermoplastic organo-sheet material for forming and joining process simulations,” Key Engineering Materials, vol. 883 KEM, p. 49, 2021, doi: 10.4028/www.scientific.net/KEM.883.49.","short":"B. Gröger, A. Hornig, A. Hoog, M. Gude, Key Engineering Materials 883 KEM (2021) 49.","chicago":"Gröger, B., A. Hornig, A. Hoog, and M. Gude. “Temperature Dependent Modelling of Fibre-Reinforced Thermoplastic Organo-Sheet Material for Forming and Joining Process Simulations.” Key Engineering Materials 883 KEM (2021): 49. https://doi.org/10.4028/www.scientific.net/KEM.883.49.","ama":"Gröger B, Hornig A, Hoog A, Gude M. Temperature dependent modelling of fibre-reinforced thermoplastic organo-sheet material for forming and joining process simulations. Key Engineering Materials. 2021;883 KEM:49. doi:10.4028/www.scientific.net/KEM.883.49"},"author":[{"first_name":"B.","last_name":"Gröger","full_name":"Gröger, B."},{"last_name":"Hornig","full_name":"Hornig, A.","first_name":"A."},{"last_name":"Hoog","full_name":"Hoog, A.","first_name":"A."},{"full_name":"Gude, M.","last_name":"Gude","first_name":"M."}],"year":"2021","project":[{"_id":"130","grant_number":"418701707","name":"TRR 285: TRR 285"},{"_id":"131","name":"TRR 285 - A: TRR 285 - Project Area A"},{"_id":"137","name":"TRR 285 – A03: TRR 285 - Subproject A03"}],"date_updated":"2023-01-02T11:51:23Z","publication":"Key Engineering Materials","department":[{"_id":"630"}],"title":"Temperature dependent modelling of fibre-reinforced thermoplastic organo-sheet material for forming and joining process simulations","page":"49","user_id":"14931","date_created":"2022-03-29T08:54:24Z","abstract":[{"text":"Joining and local forming processes for fibre-reinforced thermoplastics (FRTP) like hole-forming or variations of the clinching process require an in-depth understanding of the process induced effects on meso-scale. For numerical modelling with a geometrical description of a woven fabric, adequate material models for a representative unit cell are identified. Model calibration is achieved employing a mesoscopic finite-element-approach using the embedded element method based on tensile tests of the consolidated organo-sheets and a phenomenological evaluation of photomicrographs. The model takes temperature dependent stiffness and fibre tension failure into account. ","lang":"eng"}],"status":"public","type":"journal_article","volume":"883 KEM"}