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2017 | OriginalPaper | Chapter

Development and Investigation of Photoelastic Sensor for Torque Measurement

Authors : A. Bojtos, N. Szakály, A. Huba

Published in: Microactuators and Micromechanisms

Publisher: Springer International Publishing

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Abstract

This article describes the development and the calibration of the photoelastic contactless torque sensor and it also presents the measurement of the starting torque of a disk micro motor, as a function of the rotor angle. Finite element analysis was performed to prove the functionality of the sensor and to determine its required sizes. In order to define the torque—rotor angle characteristics of the micro motor, electromagnetic simulation was also performed and the results were compared to each other.

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Literature
go back to reference Ábrahám G (1998) Optics (in Hungarian: Optika). Panem Press, Budapest Ábrahám G (1998) Optics (in Hungarian: Optika). Panem Press, Budapest
go back to reference Bojtos A, Huba A (2011) Application of transparent silicone rubber for force and strain sensor development. 28th Danubia-Adria-symposium on advances in experimental mechanics. Siófok, Hungary, pp 219–220 Bojtos A, Huba A (2011) Application of transparent silicone rubber for force and strain sensor development. 28th Danubia-Adria-symposium on advances in experimental mechanics. Siófok, Hungary, pp 219–220
go back to reference Chaykina A, Griebel S, Zentner L (2012) Richtungsabhäniger Berührungssensor zur Sensorisierung von Nachgiebigen Mechanismen. In: Mechanismentechnik in Ilmenau, Budapest und Niš. Deutschland, Ilmenau, pp 79–90 Chaykina A, Griebel S, Zentner L (2012) Richtungsabhäniger Berührungssensor zur Sensorisierung von Nachgiebigen Mechanismen. In: Mechanismentechnik in Ilmenau, Budapest und Niš. Deutschland, Ilmenau, pp 79–90
go back to reference Chung D, Merat FL, Discenzo FM, Harris JS (1998) Neural net based torque sensor using birefringent materials. Sens Actuators A Phys 70(3):243–249 Chung D, Merat FL, Discenzo FM, Harris JS (1998) Neural net based torque sensor using birefringent materials. Sens Actuators A Phys 70(3):243–249
go back to reference Hajdu F, Horváth P (2012) Contactless torque sensor development. Acta Technica Jaurinensis 5(2):115–120 Hajdu F, Horváth P (2012) Contactless torque sensor development. Acta Technica Jaurinensis 5(2):115–120
go back to reference Halmai A, Szakály N (2010) Electromagnetic finite element simulation of the disk micromotor. In: Seventh conference on mechanical engineering. Budapest, pp 835–840 Halmai A, Szakály N (2010) Electromagnetic finite element simulation of the disk micromotor. In: Seventh conference on mechanical engineering. Budapest, pp 835–840
go back to reference Horváth P, Nagy A (2009) Optical torque sensor development. In: Brno University of Technology, Faculty of Mechanical Engineering, Luhacovice, Czech Republic, Brno, pp 91–96 Horváth P, Nagy A (2009) Optical torque sensor development. In: Brno University of Technology, Faculty of Mechanical Engineering, Luhacovice, Czech Republic, Brno, pp 91–96
go back to reference Issa M, Zentner L (2012) Sensorelemente aus Leitfähigem Silikon für einen Nachgiebigen Greifer. In: Mechanismentechnik in Ilmenau, Budapest und Niš. Deutschland, Ilmenau, pp 65–78 Issa M, Zentner L (2012) Sensorelemente aus Leitfähigem Silikon für einen Nachgiebigen Greifer. In: Mechanismentechnik in Ilmenau, Budapest und Niš. Deutschland, Ilmenau, pp 65–78
go back to reference Puente GDL, Jessop PE (2002) Temperature insensitive fiber-optic torque and strain sensor. CA, Patent No.: US006647800B2 Puente GDL, Jessop PE (2002) Temperature insensitive fiber-optic torque and strain sensor. CA, Patent No.: US006647800B2
go back to reference Sakai I (1993) Apparatus for measuring torque. EU, Patent No.: EP0578422A2 Sakai I (1993) Apparatus for measuring torque. EU, Patent No.: EP0578422A2
go back to reference Thamm F, Huszár I, Ludvig G, Szántó I (1968) Experimental methods of the mechanics (in Hungarian: A szilárdságtan kísérleti módszerei), Budapest: Műszaki Könyvkiadó, pp 218–227, 265 Thamm F, Huszár I, Ludvig G, Szántó I (1968) Experimental methods of the mechanics (in Hungarian: A szilárdságtan kísérleti módszerei), Budapest: Műszaki Könyvkiadó, pp 218–227, 265
go back to reference Zi XY, Geng S, Wu H, Zhao SF (2015) The application of torque-sensitive materials in shaft dynamic torque measurement. In: Manufacturing and engineering technology, pp 111–113 Zi XY, Geng S, Wu H, Zhao SF (2015) The application of torque-sensitive materials in shaft dynamic torque measurement. In: Manufacturing and engineering technology, pp 111–113
Metadata
Title
Development and Investigation of Photoelastic Sensor for Torque Measurement
Authors
A. Bojtos
N. Szakály
A. Huba
Copyright Year
2017
DOI
https://doi.org/10.1007/978-3-319-45387-3_5