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Bibliographic Details
Main Authors: Yergibay, Madina, Mussin, Tleukhan, Seitzhan, Saltanat, Kenzhebek, Daryn, Kappassov, Zhanat, Soh, Harold, Taunyazov, Tasbolat
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2410.23516
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author Yergibay, Madina
Mussin, Tleukhan
Seitzhan, Saltanat
Kenzhebek, Daryn
Kappassov, Zhanat
Soh, Harold
Taunyazov, Tasbolat
author_facet Yergibay, Madina
Mussin, Tleukhan
Seitzhan, Saltanat
Kenzhebek, Daryn
Kappassov, Zhanat
Soh, Harold
Taunyazov, Tasbolat
contents While most tactile sensors rely on measuring pressure, insights from continuum mechanics suggest that measuring shear strain provides critical information for tactile sensing. In this work, we introduce an optical tactile sensing principle based on shear strain detection. A silicone rubber layer, dyed with color inks, is used to quantify the shear magnitude of the sensing layer. This principle was validated using the NUSense camera-based tactile sensor. The wide-angle camera captures the elongation of the soft pad under mechanical load, a phenomenon attributed to the Poisson effect. The physical and optical properties of the inked pad are essential and should ideally remain stable over time. We tested the robustness of the sensor by subjecting the outermost layer to multiple load cycles using a robot arm. Additionally, we discussed potential applications of this sensor in force sensing and contact localization.
format Preprint
id arxiv_https___arxiv_org_abs_2410_23516
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle NUSense: Robust Soft Optical Tactile Sensor
Yergibay, Madina
Mussin, Tleukhan
Seitzhan, Saltanat
Kenzhebek, Daryn
Kappassov, Zhanat
Soh, Harold
Taunyazov, Tasbolat
Robotics
While most tactile sensors rely on measuring pressure, insights from continuum mechanics suggest that measuring shear strain provides critical information for tactile sensing. In this work, we introduce an optical tactile sensing principle based on shear strain detection. A silicone rubber layer, dyed with color inks, is used to quantify the shear magnitude of the sensing layer. This principle was validated using the NUSense camera-based tactile sensor. The wide-angle camera captures the elongation of the soft pad under mechanical load, a phenomenon attributed to the Poisson effect. The physical and optical properties of the inked pad are essential and should ideally remain stable over time. We tested the robustness of the sensor by subjecting the outermost layer to multiple load cycles using a robot arm. Additionally, we discussed potential applications of this sensor in force sensing and contact localization.
title NUSense: Robust Soft Optical Tactile Sensor
topic Robotics
url https://arxiv.org/abs/2410.23516