Design of a torque sensor based on piezoelectric torsional effect of quartz pillar

Author:

Jin Huijie,Sui Suihan,Gao Changyin

Abstract

Purpose Torque is one of the main parameters reflecting the operation status and detection of a mechanical rotation system. The use of quartz pillar to design torque sensors has advantage over the use of quartz disk, but research into the torsional effect of quartz pillar is rare. This paper aims to investigate a novel type of torque sensor based on piezoelectric torsional effect. Design/methodology/approach Based on the theory of anisotropic elasticity and the Maxwell electromagnetism, the torsion stress and distribution of surface charge of a rectangular quartz pillar are calculated. Using finite element analysis, the polarized electric field of the piezoelectric pillar is solved. According to the theoretical calculation of torsional effect of piezoelectric quartz pillar, detection electrodes are mounted on the surface of the quartz pillar and a new type of torque sensor is designed. Findings The calibration experimental results show that the bound charges are proportional to the torque applied, and the torque sensor has fully reached the dynamometer standard. Originality/value This paper shows that the torsional effect of the developed piezoelectric quartz pillar can be used to create a new type of piezoelectric torque sensor.

Publisher

Emerald

Reference12 articles.

1. Recommendation of calibration and operation of machined-tool dynamometer;CIRP;Reports of the Scientific Technical Committees,1974

2. Principle and manufacture of a new type of torque sensor based on the torsional effect of a piezoelectric quartz disc;Measurement Science and Technology,2006

3. Measurement of friction force at milli-newton level with piezoelectric sensors;J. of Piezoelectrics & Acoustooptics,2020

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