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References
Ahlquist A, Kampowski T, Oliyan Torghabehi O, Menges A, Speck T (2014) Development of a
digital framework for the computation of complex material and morphological behavior of
biological
and
technological
systems.
Computer-Aided
Design,
special
issue:
material
ecologies, available online. http://dx.doi.org/10.1016/j.cad.2014.01.013
Ashby MF (2005) Materials selection in mechanical design. MRS Bulletin
De Focatiis DSA, Guest SD (2002) Deployable membranes designed from folding tree leaves.
Philos Trans R Soc Lond, Ser A: Math, Phy Eng Sci 360(1791):227-238
Fertis D (2006) Nonlinear Structural Engineering. With Unique Theories and Methods to Solve
Effectively Complex Nonlinear Problems
Furuya H, Satou Y (2008) Deployment and retraction mechanisms for spinning solar sail
membrane. In: AIAA structures, structural dynamics, and materials conference, AIAA-2008-
2051, pp 1-10
Gas S, Druesedau H, Hennike J (1985) IL 31 Bambus—Bamboo. Karl Krämer Verlag, Stuttgart
Gruber
P
(2011)
Biomimetics
in
architecture
[architekturbionik]
architecture
of
life
and
buildings. Springer, Berlin
Jenkins CH (2005) Compliant structures in nature and engineering. Wit Pr/Computational
Mechanics. Southampton, Boston
Kniese L (2012) Vorrichtung zur Aufnahme von Kräften, mit einer flexiblen Aussenhaut (Device
for taking up forces, with a flexible outer skin). European Patent Office, 02.05.2012, EP
000001316651 A2
Knippers J (2013) From model thinking to process design. AD Architectural Design 02(2013):
74-81
Knippers J, Speck T (2012) Design and construction principles in nature and architecture.
Bioinspir Biomim 7:1-10
Knippers J, Cremers J, Gabler M, Lienhard J (2011a) Construction manual for polymers + mem-
branes. Institut für internationale Architektur-Dokumentation, München
Knippers J, Lienhard J, Masselter T, Poppinga S, Schleicher S, Speck T (2011b) Gelenkloser,
stufenlos verformbarer Klappmechanismus (Hingeless, infinitely deformable folding mech-
anism). European Patent Office, 11.05.2011, EP 2320015 A2
Kobayashi H, Daimaruya M, Vincent JFV (2000) Folding/unfolding manner of tree leaves as
deployable structures. In: Pellegrino S, Guest SD (eds) IUTAM-IASS symposium on
deployable structure : theory and applications. Kluwer Academic Pub., London, pp 211-220
Liang H, Mahadevan L (2009) The shape of a long leaf. Proc Natl Acad Sci 106(52):
22049-22054
Lienhard J, Poppinga S, Schleicher S, Masselter T, Speck T, Knippers J (2009) Abstraction of
plant movements for deployable structures in architecture. In: Thibaut B (ed) Proceedings of
the 6th plant biomechanics international conference, Ecofog, Cayenne, French Guyana,
pp 389-397
Lienhard J, Poppinga S, Schleicher S, Speck T, Knippers J (2010) Elastic architecture: nature
inspired pliable structures. In: Brebbia CA (ed) Design & Nature V: Comparing Design in
Nature With Science and Engineering. WIT Press, Southampton, Boston, pp 469-477
Lienhard J, Schleicher S, Poppinga S, Masselter T, Milwich M, Speck T, Knippers J (2011)
Flectofin: a hinge-less flapping mechanism inspired by nature. Bioinspir Biomim 6:045001
Lienhard J, Alpermann H, Gengnagel C, Knippers J (2013a) Active Bending, a Review on
structures where bending is used as a self-formation process. Int J Space Struct 28(3&4):
187-196
Lienhard J, Ahlquist S, Menges A, Knippers J (2013b) Finite element modelling in integral
design strategies of form- and bending-active hybrid structures. In: Bletzinger K-U, Kröplin
B, Onate E (eds) Structural Membranes—Proceedings of the VI international conference on
textile composites and inflatable structures
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