Electromechanical responses of dielectric elastomer composite actuators based on natural rubber and alumina

Author:

Tangboriboon Nuchnapa1,Datsanae Sudarat1,Onthong Araya1,Kunanuruksapong Ruksapong2,Sirivat Anuvat2

Affiliation:

1. The Materials Engineering Department, Kasetsart University, Bangkok, Thailand

2. The Petroleum and Petrochemical College, Chulalongkorn University, Bangkok, Thailand

Abstract

The deflection responses of the dielectric elastomer actuators are investigated under the electrical field strengths between 0 and 650 V/mm at room temperature (27°C). The Standard Thai Rubber 5L (STR 5L)/aluminum oxide (Al2O3) composite (60 wt% Al2O3) cross-linked with 1 wt% dicumyl peroxide (DCP)/Irganox 1076 and cured at 170°C starts to deflect toward the anode side at the yield electrical field strength of 200 V/mm; the degree of bending increases monotonically with increasing electrical field strength of up to 650 V/mm. As the applied electric field is released, the elastomer composite recovers its original position and shape. The X-ray diffraction pattern of the STR 5L/Al2O3 composite (60 wt% Al2O3) cross-linked with 1 wt% DCP/I 1076 and cured at 170°C suggests that the highly ionic conductive Al2O3 generates the dipole moments in addition to that of the elatomer matrix. Scanning electron microscope micrograph of the composite shows a fairly uniform distribution of alumina particles in the natural rubber (STR 5L) matrix.

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics

Reference21 articles.

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