Zobrazeno 1 - 10
of 244
pro vyhledávání: '"Sielenkämper, A"'
Autor:
Sabrina M. Curtis, Marian Sielenkämper, Gowtham Arivanandhan, Duygu Dengiz, Zixiong Li, Justin Jetter, Lisa Hanke, Lars Bumke, Eckhard Quandt, Stephan Wulfinghoff, Manfred Kohl
Publikováno v:
International Journal of Smart and Nano Materials, Vol 13, Iss 2, Pp 293-314 (2022)
ABSTRACTThe martensitic phase transformation in Ti40.4Ni48Hf11.6 shape memory alloys is leveraged for bi-directional actuation with TiNiHf/SiO2/Si composites. The shape memory properties of magnetron sputtered Ti40.4Ni48Hf11.6 films annealed at 635°
Externí odkaz:
https://doaj.org/article/e9c68021e442469bae3ec9322970fbdb
A thermomechanical finite strain shape memory alloy model and its application to bistable actuators.
Autor:
Sielenkämper, Marian1 (AUTHOR) mfs@tf.uni-kiel.de, Wulfinghoff, Stephan1 (AUTHOR)
Publikováno v:
Acta Mechanica. Aug2022, Vol. 233 Issue 8, p3059-3094. 36p.
Autor:
Curtis, Sabrina M.1,2 (AUTHOR), Sielenkämper, Marian1 (AUTHOR), Arivanandhan, Gowtham3 (AUTHOR), Dengiz, Duygu1 (AUTHOR), Li, Zixiong3 (AUTHOR), Jetter, Justin1 (AUTHOR), Hanke, Lisa1 (AUTHOR), Bumke, Lars1 (AUTHOR), Quandt, Eckhard1 (AUTHOR), Wulfinghoff, Stephan1 (AUTHOR), Kohl, Manfred3 (AUTHOR) manfred.kohl@kit.edu
Publikováno v:
International Journal of Smart & Nano Materials. Jun2022, Vol. 13 Issue 2, p293-314. 22p.
Publikováno v:
Acta Mechanica. 233:3059-3094
This work presents a thermomechanical finite strain shape memory alloy model that utilizes a projection method to deal with the incompressibility constraint on inelastic strains. Due to its finite strain formulation, it is able to accurately predict
Publikováno v:
International Journal for Numerical Methods in Engineering. 123:245-267
Akademický článek
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Autor:
Sabrina M. Curtis, Duygu Dengiz, Prasanth Velvaluri, Lars Bumke, Eckhard Quandt, Marian Sielenkämper, Stephan Wulfinghoff, Gowtham Arivanandhan, Zixiong Li, Manfred Kohl
Publikováno v:
SMST 2022: Extended Abstracts from the International Conference on Shape Memory and Superelastic Technologies.
The thermal induced martensitic phase transition in TiNiHf was exploited for bi-directional actuation with TiNiHf/SiO2/Si composites. When compared to free-standing films of similar thickness, films on a substrate exhibit a reduced fatigue effect upo
Akademický článek
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K zobrazení výsledku je třeba se přihlásit.
K zobrazení výsledku je třeba se přihlásit.
Autor:
Curtis, Sabrina M., Sielenkämper, Marian, Arivanandhan, Gowtham, Dengiz, Duygu, Li, Zixiong, Jetter, Justin, Hanke, Lisa, Bumke, Lars, Quandt, Eckhard, Wulfinghoff, Stephan, Kohl, Manfred
Publikováno v:
International Journal of Smart and Nano Materials, 13 (2), 293-314
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::c3254c6177b687b1a0934d23b209e659