z-logo
open-access-imgOpen Access
Contact High Temperature Strain Automatic Calibration and Precision Compensation Technology
Author(s) -
Zijian Jia,
Wenrui Wang,
Zhang Jia-Ming
Publication year - 2022
Publication title -
journal of artificial intelligence and technology
Language(s) - English
Resource type - Journals
ISSN - 2766-8649
DOI - 10.37965/jait.2022.0083
Subject(s) - thermocouple , strain gauge , calibration , extensometer , temperature measurement , compensation (psychology) , materials science , signal (programming language) , displacement (psychology) , atmospheric temperature range , control theory (sociology) , mechanical engineering , acoustics , computer science , physics , engineering , composite material , thermodynamics , psychology , control (management) , quantum mechanics , artificial intelligence , psychoanalysis , psychotherapist , programming language
In order to solve the problem of contact high temperature strain precision measure-ment, this paper established an automatic calibration device for high temperature strain gauges. The temperature of the high temperature furnace was automatically con-trolled by the temperature control device. The electric cylinder was driven by the servo motor to apply the load to the calibration beam. The output signal of the high temperature strain gauge, the thermocouple signal and the displacement signal of the grat-ing ruler were collected at the same time. The deformation measurement results obtained after temperature correction were used to calculate the theoretical mechanical strain, which were fed back to control the loading action to complete the automatic calibration process. Based on the above calibration device, the high temperature strain measurement accuracy correction software was developed to calibrate the high temperature strain gauge with multi-parameters, and the curves of sensitivity coefficient, thermal output, zero drift and creep characteristics with temperature were obtained, and a strain measurement accuracy compensation model was established. The high temperature strain measurement experiment was carried out to verify that the modified model can meet the requirements in each temperature range.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here