Highly Sensitive Tactile Shear Sensor Using Spatially Digitized Contact Electrodes

  • Choi, Eunsuk
  • Hwang, Soonhyung
  • Yoon, Yousang
  • Seo, Hojun
  • Lee, Jusin
  • ... Lee, Seung-Beck
  • 외 5명
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초록

In this article, we report on a highly sensitive tactile shear sensor that was able to detect minute levels of shear and surface slip. The sensor consists of a suspended elastomer diaphragm with a top ridge structure, a graphene layer underneath, and a bottom substrate with multiple spatially digitized contact electrodes. When shear is applied to the top ridge structure, it creates torque and deflects the elastomer downwards. Then, the graphene electrode makes contact with the bottom spatially digitized electrodes completing a circuit producing output currents depending on the number of electrodes making contact. The tactile shear sensor was able to detect shear forces as small as 6 N, detect shear direction, and also distinguish surface friction and roughness differences of shearing objects. We also succeeded in detecting the contact slip motion of a single thread demonstrating possible applications in future robotic fingers and remote surgical tools.

키워드

shear sensorhigh sensitivityfriction detectionsurface roughness detectionElastomersFrictionGrapheneGraphite electrodesRobotic surgerySurgical equipmentContact electrodesGraphene electrodesGraphene layersHigh sensitivityRidge structuresShear directionShear sensorSurface frictionSurface roughness
제목
Highly Sensitive Tactile Shear Sensor Using Spatially Digitized Contact Electrodes
저자
Choi, EunsukHwang, SoonhyungYoon, YousangSeo, HojunLee, JusinYeom, SeongohRyu, GunwooYang, HeewonKim, SunjinSul, OnejaeLee, Seung-Beck
DOI
10.3390/s19061300
발행일
2019-03
유형
Article
저널명
Sensors
19
6

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