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Thermoresistive strain sensor and positioning method for roll-to-roll processes
Journal article   Open access   Peer reviewed

Thermoresistive strain sensor and positioning method for roll-to-roll processes

Kuan-Hsun Liao and Cheng-Yao Lo
Sensors (Switzerland), Vol.14(5), pp.8082-8095
05/05/2014

Abstract

Alignment Gauge factor Infrared Joule heating Polyethylenenaphthalate Registration Roll-to-roll Sensor Strain Thermoresistive
This study uses the Joule heating effect-generated temperature difference to monitor in real-time and localize both compressive and tensile strains for the polymer substrates used in the roll-to-roll process. A serpentine gold (Au) line was patterned on a polyethylenenaphthalate (PEN) substrate to form the strain sensor based on thermoresistive behavior. This strain sensor was then subjected to either current or voltage to induce the Joule heating effect on the Au resistor. An infrared (IR) detector was used to monitor the strain-induced temperature difference on the Au and PEN surfaces and the minimal detectable bending radius was 0.9 mm with a gauge factor (GF) of 1.46. The proposed design eliminates the judgment ambiguity from conventional resistive strain sensors where resistance is the only physical quantity monitored. This study precisely and successfully indicated the local strain quantitatively and qualitatively with complete simulations and measurements. © 2014 by the authors; licensee MDPI, Basel, Switzerland.
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https://doi.org/10.3390/s140508082View
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