A new procedure to measure near yield residual stresses using the deep hole drilling technique

AH Mahmoudi, S Hossain, CE Truman, DJ Smith, MJ Pavier

Research output: Contribution to journalArticle (Academic Journal)peer-review

128 Citations (Scopus)

Abstract

Mechanical strain relief techniques for estimating the magnitude of residual stress work by measuring strains or displacements when part of the component is machined away. The underlying assumption is that such strain or displacement changes result from elastic unloading. Unfortunately, in components containing high levels of residual stress, elastic-plastic unloading may well occur, particularly when the residual stresses are highly triaxial. This paper examines the performance of one mechanical strain relief technique particularly suitable for large section components, the deep hole drilling (DHD) technique. The magnitude of error is calculated for different magnitudes of residual stress and can be substantial for residual stress states close to yield. A modification to the technique is described to allow large magnitudes of residual stress to be measured correctly. The new technique is validated using the case of a quenched cylinder where use of the standard DHD technique leads to unacceptable error. The measured residual stresses using the new technique are compared with the results obtained using the neutron diffraction technique and are shown to be in excellent agreement.
Translated title of the contributionA new procedure to measure near yield residual stresses using the deep hole drilling technique
Original languageEnglish
Pages (from-to)595 - 604
Number of pages9
JournalExperimental Mechanics
Volume49
Issue number4
DOIs
Publication statusPublished - Aug 2009

Bibliographical note

Publisher: Springer Boston

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