Title: Why Is It So Challenging to Measure Residual Stresses ?

Journal Article · · Experimental Mechanics

Abstract Background Residual stresses have a “hidden” character because they exist in a material without the presence of any external loads. They cannot easily be added or subtracted in a quantified manner, as is done when measuring applied stresses, and so are much more challenging to measure. Objective The objective here is to identify and describe the various features that make residual stress measurement methods challenging and to consider the ways that these challenges can be addressed in practice. Methods Various of the most common residual stress measurements methods are considered and the challenges associated with them are identified and classified. Results Five major challenges for residual stress measurements, and the approaches used for their resolution, are identified. Conclusions Despite the various challenges that need to be overcome, residual stress measurements can be successfully undertaken in practice. The most significant feature for success is a highly skilled and knowledge practitioner.

Research Organization:
Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)
Sponsoring Organization:
Engineering and Physical Sciences Research Council (EPSRC); European Research Council (ERC); USDOE; USDOE National Nuclear Security Administration (NNSA)
Grant/Contract Number:
89233218CNA000001
OSTI ID:
1881050
Report Number(s):
LA-UR-22-22874; PII: 879
Journal Information:
Experimental Mechanics, Journal Name: Experimental Mechanics Journal Issue: 9 Vol. 62; ISSN 0014-4851
Publisher:
Springer Science + Business MediaCopyright Statement
Country of Publication:
United States
Language:
English

References (22)

Practical Residual Stress Measurement Methods book August 2013
The Slitting Method book January 2013
The Contour Method book August 2013
The Contour Method Cutting Assumption: Error Minimization and Correction book January 2011
Residual stress measurement in steel plates and welds using critically refracted longitudinal (LCR) waves journal December 1996
Measuring Multiple Residual-Stress Components using the Contour Method and Multiple Cuts journal August 2009
Superposition and Destructive Residual Stress Measurements journal June 2012
Estimation of Uncertainty for Contour Method Residual Stress Measurements journal December 2014
Mitigating Cutting-Induced Plasticity Errors in the Determination of Residual Stress at Cold Expanded Holes Using the Contour Method journal August 2021
Directional and oscillating residual stress on the mesoscale in additively manufactured Ti-6Al-4V journal April 2019
Plasticity effects in incremental slitting measurement of residual stresses journal July 2010
Stress measurements in welds: Problem areas journal November 2006
Towards good practice guidelines for the contour method of residual stress measurement journal August 2014
A Mechanical Determination of Biaxial Residual Stress in Sheet Materials journal February 1951
Methods for obtaining the strain-free lattice parameter when using diffraction to determine residual stress journal September 2007
Cross-Sectional Mapping of Residual Stresses by Measuring the Surface Contour After a Cut journal November 2000
Use of Inverse Solutions for Residual Stress Measurements journal January 2006
Measurement of Near Surface Residual Stresses Using Electric Discharge Wire Machining journal January 1994
Residual Stress Measurement by Successive Extension of a Slot: The Crack Compliance Method journal February 1999
Residual stress. Part 2 – Nature and origins journal April 2001
Introduction to the Characterization of Residual Stress by Neutron Diffraction book January 2005
The cosα method for X-ray residual stress measurement using two-dimensional detector journal January 2019