Projekteja vuodessa
Abstrakti
In nature, wind can transport objects of diverse shapes and materials over long distances spanning meters or beyond. In contrast, most noncontact manipulation methods are effective only over centimeter-scale distances and require the manipulated objects to have specific magnetic, electrical, or other material properties and shapes. Herein, a meter-scale distance manipulation method is presented for controlling the motion of objects of diverse shapes and materials on a plane surface using a jet-induced airflow field. The airflow field is varied by controlling the direction of a single air jet projected onto a surface based on the positions of objects to steer the objects to follow desired trajectories up to 2.7 m away. A wide variety of objects can be automatically manipulated, from regularly shaped polystyrene hemispheres and sticks to irregularly shaped cotton wads and face masks as well as deformable tissue papers and plastic bags. The method is also robust, effectively manipulating objects under challenging conditions, e.g., external airflow disturbances, surface obstacles, and air–water interface. Finally, three application cases are demonstrated: collecting diverse objects into a target receptacle, hooking and retrieving heavy objects with a tethered mobile agent, and closing an electrical circuit with an untethered soft agent.
Alkuperäiskieli | Englanti |
---|---|
Sivumäärä | 11 |
Julkaisu | Advanced Intelligent Systems |
Vuosikerta | 6 |
Numero | 11 |
DOI - pysyväislinkit | |
Tila | Julkaistu - marrask. 2024 |
OKM-julkaisutyyppi | A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä |
Sormenjälki
Sukella tutkimusaiheisiin 'Meter-Scale Distance Manipulation of Diverse Objects with Jet-Induced Airflow Field'. Ne muodostavat yhdessä ainutlaatuisen sormenjäljen.Projektit
- 2 Päättynyt
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RoboCelli: Robotic Magnetic Needle Characterization of Single Nanoparticle Uptake in Cells
Zhou, Q. (Vastuullinen tutkija), Bettahar, H. (Projektin jäsen), Isitman, O. (Projektin jäsen), Yu, J. (Projektin jäsen), Kopitca, A. (Projektin jäsen), Haeri, S. (Projektin jäsen) & Vieira, A. (Projektin jäsen)
01/09/2020 → 31/08/2024
Projekti: Academy of Finland: Other research funding
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-: Autonomous Shaping and Structuring using Acoustic Field
Zhou, Q. (Vastuullinen tutkija), Haeri, S. (Projektin jäsen), Kravtcova, A. (Projektin jäsen), Kopitca, A. (Projektin jäsen), Isitman, O. (Projektin jäsen), Kandemir, M. (Projektin jäsen) & Yu, J. (Projektin jäsen)
01/01/2020 → 31/12/2022
Projekti: Academy of Finland: Other research funding