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3D printing of twisting and rotational bistable structures with tuning elements.


ABSTRACT: Three-dimensional (3D) printing is ideal for the fabrication of various customized 3D components with fine details and material-design complexities. However, most components fabricated so far have been static structures with fixed shapes and functions. Here we introduce bistability to 3D printing to realize highly-controlled, reconfigurable structures. Particularly, we demonstrate 3D printing of twisting and rotational bistable structures. To this end, we have introduced special joints to construct twisting and rotational structures without post-assembly. Bistability produces a well-defined energy diagram, which is important for precise motion control and reconfigurable structures. Therefore, these bistable structures can be useful for simplified motion control in actuators or for mechanical switches. Moreover, we demonstrate tunable bistable components exploiting shape memory polymers. We can readjust the bistability-energy diagram (barrier height, slope, displacement, symmetry) after printing and achieve tunable bistability. This tunability can significantly increase the use of bistable structures in various 3D-printed components.

SUBMITTER: Jeong HY 

PROVIDER: S-EPMC6344586 | biostudies-literature | 2019 Jan

REPOSITORIES: biostudies-literature

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3D printing of twisting and rotational bistable structures with tuning elements.

Jeong Hoon Yeub HY   An Soo-Chan SC   Seo In Cheol IC   Lee Eunseo E   Ha Sangho S   Kim Namhun N   Jun Young Chul YC  

Scientific reports 20190123 1


Three-dimensional (3D) printing is ideal for the fabrication of various customized 3D components with fine details and material-design complexities. However, most components fabricated so far have been static structures with fixed shapes and functions. Here we introduce bistability to 3D printing to realize highly-controlled, reconfigurable structures. Particularly, we demonstrate 3D printing of twisting and rotational bistable structures. To this end, we have introduced special joints to constr  ...[more]

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