Krüger, F.; Thierer, R.; Tahouni, Y.; Sachse, R.; Wood, D.; Menges, A.; Bischoff, M.; Rühe, J.
Development of a Material Design Space for 4D-Printed Bio-Inspired Hygroscopically Actuated Bilayer Structures with Unequal Effective Layer Widths. Biomimetics 2021, 6, 58.
https://doi.org/10.3390/biomimetics6040058
AMA Style
Krüger F, Thierer R, Tahouni Y, Sachse R, Wood D, Menges A, Bischoff M, Rühe J.
Development of a Material Design Space for 4D-Printed Bio-Inspired Hygroscopically Actuated Bilayer Structures with Unequal Effective Layer Widths. Biomimetics. 2021; 6(4):58.
https://doi.org/10.3390/biomimetics6040058
Chicago/Turabian Style
Krüger, Friederike, Rebecca Thierer, Yasaman Tahouni, Renate Sachse, Dylan Wood, Achim Menges, Manfred Bischoff, and Jürgen Rühe.
2021. "Development of a Material Design Space for 4D-Printed Bio-Inspired Hygroscopically Actuated Bilayer Structures with Unequal Effective Layer Widths" Biomimetics 6, no. 4: 58.
https://doi.org/10.3390/biomimetics6040058
APA Style
Krüger, F., Thierer, R., Tahouni, Y., Sachse, R., Wood, D., Menges, A., Bischoff, M., & Rühe, J.
(2021). Development of a Material Design Space for 4D-Printed Bio-Inspired Hygroscopically Actuated Bilayer Structures with Unequal Effective Layer Widths. Biomimetics, 6(4), 58.
https://doi.org/10.3390/biomimetics6040058