Bibliography

[1] Arena2036. (2017). Digitaler prototyp digitPr.

[2] Springer Vieweg. (2019). Der digitale prototyp: Ganzheitlicher digitaler prototyp im leichtbau für die großserienprodution.

[3] HDF Group. (2021). HDFView [Computer software]. https://www.hdfgroup.org/downloads/hdfview/.

[4] LS-DYNA Support. (2021). History variables for certain material models. https://www.dynasupport.com/howtos/material/history-variables.

[5] C. Amann, S. Kreissl, H. Krass, J. Meinhardt, C. Liebold, and P. M. Merklein. (2021). Beruecksichtigung der umformbedingten reorientierung bei der verzugssimulation von CFK-bauteilen. LS-DYNA Forum, 14. Bamberg, Germany.

[6] B. Amos and V. Garcia. (2020). Cparse [Computer software]. GitHub.

[7] R. Bay. (1991). Fiber orientation in injection-molded composites: A comparison of theory and experiment [Doctoral dissertation, University of Illinois].

[8] J. Dittmann, P. Boehler, D. Michaelis, M. Vinot, C. Liebold, F. Fritz, H. Finckh, and P. Middendorf. (2015). DigitPro - digital prototype build-up using the example of a braided structure. International MERGE Technologies Conference for Lightweight Structures. Chemnitz, Germany.

[9] J. Gahm. (2014). Microstructural feature-based processing and analysis of diffusion tensor MRI [Doctoral dissertation, University of California].

[10] S. Hartmann, C. Liebold, and A. Erhart. (2017, May). Introduction to short fiber reinforced composite modeling with LS-DYNA. DYNAmore GmbH.

[11] R. Jennrich, M. Roth, S. Kolling, and C. Liebold. (2014, October). Experimental and numerical analysis of a glass fiber reinforced plastic. LS-DYNA User's Forum, 13. Bamberg, Germany.

[12] J. S. Cintra and C. L. III Tucker. (1995). Orthotropic closure approximations for flow‐induced fiber orientation. Journal of Rheology, 39, 1096-1122.

[13] D. Koch, A. Haufe, C. Wilking, C. Liebold, M. Feucht, and S. Roller. (2020). Challenges in the simulative consideration of the aluminium hardening induced by the KTL furnace. 16th International LD-DYNA Users Conference.

[14] S. Kreissl, T. Senner, A. Lipp, and J. Meinhardt. (2014). Industrial forming simulation of multi-layered UD non-crimp-fabrics. LS-DYNA Forum, 13. Bamberg, Germany.

[15] B. Lauterbach, M Erzgraeber, C. Liebold, M. Helbig, and A. Haufe. (2016, October). Closed simulation process chain for short fiber reinforced plastic components with LS-DYNA. LS-DYNA User's Forum, 14. Bamberg, Germany.

[16] C. Liebold and A. Erhart. (2015). Recent enhancements on short-fiber reinforced plastics modeling in LS-DYNA. European LS-DYNA Conference, 10. Wuerzburg, Germany.

[17] C. Liebold and M. Vinot. (2017). Utilizing the digital prototype for a closed simulation process chain and data management. Stuttgarter Symposium (FKFS), 17. Stuttgart, Germany.

[18] C. Liebold and M. Vinot. (2020). Moeglichkeiten zur beruecksichtigung von warmauslagerungseffekten bei aluminiumbauteilen in der finite-elemente-simulation. NAFEMS DACH Conference.

[19] (2014, September). Livermore software technology corporation (LSTC). LS-DYNA User's Manual, 1. Livermore, CA, USA.

[20] (2014, September). Livermore software technology corporation (LSTC). LS-DYNA User's Manual, 2. Livermore, CA, USA.

[21] P. Reithofer, A. Fertschej, B. Hirschmann, B. Jilka, A. Erhart, and S. Hartmann. (2018). *MAT_4A_MICROMEC: Theory and application notes. 15th International LS-DYNA Users Conference. Detroit, MI, USA.

[22] D. Shepard. (1968). A two-dimensional interpolation function for irregularly-spaced data. Proceeding ACM National Conference.

[23] M. Vinot. (2017, July). Output of rves - documentation for envyo - implementation. German Aerospace Center - DLR.

[24] K. Wolf, U. Scholl, P. Post, J. V. Peetz, M. Ottavio, T. Wallmersperger, M. Waedt, and B. Kroeplin. (2005, May). Verbesserung der prognosefaehigkeit der crashsimulation aus hoeherfesten mehrphasenstaehlen durch beruecksichtigung von ergebnissen vorangestellter umformsimulationen (Technical report FAT schriftenreihe 198). Forschungsreihe Automobiltechnik e.V. Frankfurt, Germany.

[25] D. Zerbst. C. Liebold. T. Gereke. S. Clauß. C. Cherif. (2021). Numerical simulation of the forming process of veneer laminates. Journal of Composites Science, 5(6), 150. https://doi.org/10.3390/jcs5060150.

[26] D. Zerbst. C. Liebold. T. Gereke. A. Haufe. S. Clauß. C. Cherif. (2020). Modelling inhomogeneity of veneer laminates with a finite element mapping method based on arbitrary grayscale images. Materials, 13, 2993. https://doi.org/10.3390/ma13132993.