Towards a deployable satellite gripper based on multisegment dielectric elastomer minimum energy structures
暂无分享,去创建一个
Samuel Rosset | Herbert Shea | Jun Shintake | Oluwaseun A. Araromi | I. Gavrilovich | I. Gavrilovich | H. Shea | J. Shintake | S. Rosset | O. Araromi
[1] Carmel Majidi,et al. Soft-matter composites with electrically tunable elastic rigidity , 2013 .
[2] S. Bauer,et al. Self-organized minimum-energy structures for dielectric elastomer actuators , 2006 .
[3] H. Shea,et al. Flexible and stretchable electrodes for dielectric elastomer actuators , 2012, Applied Physics A.
[4] J. Liou. An active debris removal parametric study for LEO environment remediation , 2011 .
[5] Samuel Rosset,et al. Model and design of dielectric elastomer minimum energy structures , 2014 .
[6] S. Bauer,et al. Energy minimization for self-organized structure formation and actuation , 2007 .
[7] Dario Floreano,et al. Effect of mechanical parameters on dielectric elastomer minimum energy structures , 2013, Smart Structures.
[8] I. Gavrilovich,et al. Rollable Multisegment Dielectric Elastomer Minimum Energy Structures for a Deployable Microsatellite Gripper , 2015, IEEE/ASME Transactions on Mechatronics.
[9] Irina Gavrilovich,et al. Study of a Dielectric Elastomer Gripper for Cleanspace One , 2013 .
[10] Jean-Philippe Thiran,et al. Uncooperative Rendezvous and Docking for MicroSats , 2013, RAST 2013.