Avoiding the pull-in instability of a dielectric elastomer film and the potential for increased actuation and energy harvesting.

scientific article published on 19 June 2017

Avoiding the pull-in instability of a dielectric elastomer film and the potential for increased actuation and energy harvesting. is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1039/C7SM00542C
P698PubMed publication ID28628169

P50authorXuanhe ZhaoQ72989190
Shengyou YangQ88340041
Pradeep SharmaQ88340043
P2093author name stringPradeep Sharma
Xuanhe Zhao
Shengyou Yang
P2860cites workHigh-speed electrically actuated elastomers with strain greater than 100%Q28143967
Dielectric Elastomer Generators: How Much Energy Can Be Converted?Q30052097
Rontgen's electrode-free elastomer actuators without electromechanical pull-in instability.Q30493266
25th anniversary article: A soft future: from robots and sensor skin to energy harvestersQ34556883
Materials and mechanics for stretchable electronicsQ37719208
On-demand hierarchical patterning with electric fields.Q41873659
Creasing-wrinkling transition in elastomer films under electric fieldsQ45825391
Electrets in soft materials: nonlinearity, size effects, and giant electromechanical couplingQ47442577
Optimizing the electrical energy conversion cycle of dielectric elastomer generators.Q51063619
Dielectric Elastomer Based "Grippers" for Soft Robotics.Q51703166
Improved electromechanical behavior in castable dielectric elastomer actuatorsQ58921247
Electric Strength of Irradiated PolytheneQ59063214
P433issue26
P304page(s)4552-4558
P577publication date2017-06-19
P1433published inSoft MatterQ3488877
P1476titleAvoiding the pull-in instability of a dielectric elastomer film and the potential for increased actuation and energy harvesting
P478volume13

Reverse relations

Q48042527Stretch tuning of the Debye ring for 2D photonic crystals on a dielectric elastomer membranecites workP2860

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