Universal Procedure for Correction of Plasticity Effect in Hole-Drilling Uniform Residual Stress Measurement

被引:7
|
作者
Halabuk, D. [1 ]
Navrat, T. [1 ]
机构
[1] Brno Univ Technol, Fac Mech Engn, Inst Solid Mech Mechatron & Biomech, Tech 2896-2, Brno 61669, Czech Republic
关键词
Hole-drilling method; Residual stress; Plasticity effect; Correction procedure; Neural network; Finite element simulations;
D O I
10.1007/s11340-022-00869-z
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Background The hole-drilling method is a well-known and widely used technique for the determination of residual stresses, but is limited to materials with linear elastic behaviour. This can be a problem when high residual stresses are measured, since a local yielding can occur due to stress concentration around the drilled hole. Objective If the residual stress exceeds about 80% of the material yield stress, the error caused by the plasticity effect becomes significant. In order to correctly evaluate high uniform residual stresses, a universal procedure for a correction of the plasticity effect is introduced. Methods The procedure uses a neural network and is capable of correcting any combination of uniform residual stresses with magnitudes up to the material yield stress. It also covers a wide range of material parameters, hole diameters, and strain gauge rosettes and it is independent of the orientation of the strain gauge rosette. Results The correction procedure was tested by more than a million randomly generated stress states that covered the entire range of input parameters and performs remarkably well, since the error of the corrected residual stresses is negligible even for the states with residual stress magnitudes equal to the material yield stress. Conclusions The proposed correction extends the application range of the hole-drilling method to high uniform residual stresses and therefore can be very useful for practical measurements.
引用
收藏
页码:1267 / 1287
页数:21
相关论文
共 50 条
  • [21] Hole-Drilling Residual Stress Measurement with Artifact Correction Using Full-Field DIC
    Schajer, G. S.
    Winiarski, B.
    Withers, P. J.
    EXPERIMENTAL MECHANICS, 2013, 53 (02) : 255 - 265
  • [22] Hole-Drilling Residual Stress Measurement with Artifact Correction Using Full-Field DIC
    G. S. Schajer
    B. Winiarski
    P. J. Withers
    Experimental Mechanics, 2013, 53 : 255 - 265
  • [23] Study on Plasticity Modification for Measuring High Residual Stress by Hole-Drilling Method
    ZHENG Jianyi
    ZHOU Chuanyan
    ZHENG Gaofeng
    LIN Junhui
    Instrumentation, 2018, 5 (04) : 55 - 62
  • [24] Correction of errors introduced by hole eccentricity in residual stress measurement by the hole-drilling strain-gage method
    Barsanescu, Paul
    Carlescu, Petru
    MEASUREMENT, 2009, 42 (03) : 474 - 477
  • [25] Measurement of non-uniform residual stresses by incremental hole-drilling method
    Zheng, J. (zjy@xmu.edu.cn), 1600, Nanjing University of Aeronautics an Astronautics (34):
  • [26] Effect of Material Physical Properties on Residual Stress Measurement by EDM Hole-Drilling Method
    Lee, H. T.
    Tai, T. Y.
    Liu, C.
    Hsu, F. C.
    Hsu, J. M.
    JOURNAL OF ENGINEERING MATERIALS AND TECHNOLOGY-TRANSACTIONS OF THE ASME, 2011, 133 (02):
  • [27] Universal Calibration Constants for Strain Gauge Hole-Drilling Residual Stress Measurements
    Schajer, G. S.
    EXPERIMENTAL MECHANICS, 2022, 62 (02) : 351 - 358
  • [28] Hole-Drilling Method in Residual Stress Diagnostics
    Popov, A. L.
    Kozintsev, V. M.
    Chelyubeev, D. A.
    Levitin, A. L.
    MECHANICS OF SOLIDS, 2021, 56 (07) : 1320 - 1339
  • [29] Advances in Hole-Drilling Residual Stress Measurements
    Schajer, G. S.
    EXPERIMENTAL MECHANICS, 2010, 50 (02) : 159 - 168
  • [30] Measurement of residual stress in engineering plastics using the hole-drilling technique
    Maxwell, AS
    Turnbull, A
    POLYMER TESTING, 2003, 22 (02) : 231 - 233