Benchmark of residual stress for ultrasonic nondestructive testing

Wentao Song, Qinxue Pan, Chunguang Xu, Xiao Li, Haiyang Liu

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

12 Citations (Scopus)

Abstract

Based on acoustoelasticsticity theory, critically refracted longitudinal (LCR) wave was used to detect the residual stress in X70 steel. The method of fabrication and calibration for residual stress reference block was introduced and the detecting error brought by environmental temperature changes was corrected. The theoretical equation about the effect of temperature on residual stress detecting was analyzed. Low/high temperature test chambers and ultrasonic residual stress detecting equipment was used to detect the change of ultrasonic transit time difference, which caused by the temperature change. MATLAB second order polynomial was used to fit the experimental detecting results and fitted equation was obtained. The fitted equation was compensated to the system by software programming. The change of residual stress in reference block in two situations was compared. The results showed that temperature change had a large impact on the accuracy of ultrasonic residual stress detecting. The error of residual stress detecting can be effectively reduced by the temperature compensation modules. As result, the absolute precision of detection reaches ±10MPa.

Original languageEnglish
Title of host publicationFENDT 2013 - Proceedings of 2013 Far East Forum on Nondestructive Evaluation/Testing
Subtitle of host publicationNew Technology and Application
Pages73-76
Number of pages4
DOIs
Publication statusPublished - 2013
Event2013 Far East Forum on Nondestructive Evaluation/Testing: New Technology and Application, FENDT 2013 - Ji'nan, China
Duration: 17 Jun 201320 Jun 2013

Publication series

NameFENDT 2013 - Proceedings of 2013 Far East Forum on Nondestructive Evaluation/Testing: New Technology and Application

Conference

Conference2013 Far East Forum on Nondestructive Evaluation/Testing: New Technology and Application, FENDT 2013
Country/TerritoryChina
CityJi'nan
Period17/06/1320/06/13

Keywords

  • reference block
  • residual stress
  • temperature
  • ultrasonic

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