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Barium titanate elastomer composite based capacitive stretch sensor
Conference paper

Barium titanate elastomer composite based capacitive stretch sensor

Eshwar Reddy Cholleti, Jonathan Stringer, Chris Bowen, Cheng-Yao Lo and Kean Aw
IEEE/ASME International Conference on Advanced Intelligent Mechatronics, AIM, Vol.2019-July, pp.1233-1237
07/2019

Abstract

Barium Titanate Ecoflex High strain Interdigital capacitive sensor Electrical and Electronic Engineering Control and Systems Engineering Computer Science Applications Software
This work investigates the performance of a Barium-Titanate (BTO) elastomer composite interdigital capacitive based large strain sensor. The high strain interdigital capacitive sensor examined here is fabricated using a ceramic polymer composite substrate with different sizes of BTO's nanoparticles based on 100 nm or 200 nm BTO ceramic particles dispersed uniformly in an Ecoflex™ 00-30 silicone based elastomer. While BTO particles with a 100 nm particle size offers a higher relative permittivity and slightly higher change in capacitance with strain, it is demonstrated to be less reliable than those formed with 200 nm BTO nanoparticles.

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