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Application of machine learning to object manipulation with bio-inspired microstructures Manar, Samri. - Saarbrücken : Leibniz-Institut für Neue Materialien, 2023
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A bioinspired snap-through metastructure for manipulating micro-objects Zhang, Xuan. - Saarbrücken : Leibniz-Institut für Neue Materialien, 2022
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3 |
Film-Terminated Fibrillar Microstructures with Improved Adhesion on Skin-like Surfaces Moreira Lana, Gabriela. - Saarbrücken : Leibniz-Institut für Neue Materialien, 2022
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Sliding Mechanism for Release of Superlight Objects from Micropatterned Adhesives Wang, Yue. - Saarbrücken : Leibniz-Institut für Neue Materialien, 2022
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Tuning the Release Force of Microfibrillar Adhesives by Geometric Design Barnefske, Lena. - Saarbrücken : Leibniz-Institut für Neue Materialien, 2022
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Water as a "glue" : Elasticity-enhanced wet attachment of biomimetic microcup structures Wang, Yue. - Saarbrücken : Leibniz-Institut für Neue Materialien, 2022
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Tuning the Release Force of Microfibrillar Adhesives by Geometric Design Enthalten in Advanced materials interfaces 16.09.2022. 8 S.
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Sliding Mechanism for Release of Superlight Objects from Micropatterned Adhesives Enthalten in Advanced materials interfaces 05.01.2022. 9 S.
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A Design Strategy for Mushroom-Shaped Microfibrils with Optimized Dry Adhesion: Experiments and Finite Element Analyses Zhang, Xuan. - Saarbrücken : Leibniz-Institut für Neue Materialien, 2021
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Breakdown of continuum models for spherical probe adhesion tests on micropatterned surfaces Bettscheider, Simon. - Saarbrücken : Leibniz-Institut für Neue Materialien, 2021
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