Roth, A.; Ganzenmüller, G.; Gutmann, F.; Jakkula, P.; Hild, F.; Pfaff, A.; Yin, K.; Eberl, C.; Hiermaier, S.
2D Numerical Simulation of Auxetic Metamaterials Based on Force and Deformation Consistency. Materials 2022, 15, 4490.
https://doi.org/10.3390/ma15134490
AMA Style
Roth A, Ganzenmüller G, Gutmann F, Jakkula P, Hild F, Pfaff A, Yin K, Eberl C, Hiermaier S.
2D Numerical Simulation of Auxetic Metamaterials Based on Force and Deformation Consistency. Materials. 2022; 15(13):4490.
https://doi.org/10.3390/ma15134490
Chicago/Turabian Style
Roth, Antonina, Georg Ganzenmüller, Florian Gutmann, Puneeth Jakkula, François Hild, Aron Pfaff, Kaiyang Yin, Chris Eberl, and Stefan Hiermaier.
2022. "2D Numerical Simulation of Auxetic Metamaterials Based on Force and Deformation Consistency" Materials 15, no. 13: 4490.
https://doi.org/10.3390/ma15134490
APA Style
Roth, A., Ganzenmüller, G., Gutmann, F., Jakkula, P., Hild, F., Pfaff, A., Yin, K., Eberl, C., & Hiermaier, S.
(2022). 2D Numerical Simulation of Auxetic Metamaterials Based on Force and Deformation Consistency. Materials, 15(13), 4490.
https://doi.org/10.3390/ma15134490