Thermoelastic investigation of residual stress: plastic deformation and the change in thermoelastic constant

被引:2
作者
Robinson, A. F. [1 ]
Dulieu-Barton, J. M. [1 ]
Quinn, S. [1 ]
Burguete, R. L. [2 ]
机构
[1] Univ Southampton, Sch Engn Sci, Southampton SO17 1BJ, Hants, England
[2] Airbus Operations Ltd, New Filton House, Bristol BS997AR, Avon, England
来源
ICEM 14: 14TH INTERNATIONAL CONFERENCE ON EXPERIMENTAL MECHANICS, VOL 6 | 2010年 / 6卷
关键词
D O I
10.1051/epjconf/20100638016
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Plastic deformation causes very small changes in the thermoelastic response of metallic materials; this variation of the thermoelastic constant has the potential to form the basis of a new non-destructive, non-contact, full-field technique for residual stress assessment that is quicker and cheaper than existing methods. The effect of plastic strain on the thermoelastic constant is presented as a potential basis for a calibration methodology that reveals areas of a component that have experienced plastic strain. Establishing this basis provides the initial step in identifying a new approach to residual stress analysis using the thermoelastic response. An evaluation of initial calibration results is presented and the feasibility of applying the methodology to actual components is assessed. As the response to plastic strain is likely to be small it is necessary to identify the effects of the paint coating; experimental work is presented that highlights the importance of repeatable coating approaches.
引用
收藏
页数:8
相关论文
共 50 条
[21]   Modeling of Thermoelastic-Visco-Plastic Deformation of Flexible Reinforced Plates [J].
A. P. Yankovskii .
Mechanics of Solids, 2022, 57 :1717-1739
[22]   Modeling of Thermoelastic-Visco-Plastic Deformation of Flexible Reinforced Plates [J].
Yankovskii, A. P. .
MECHANICS OF SOLIDS, 2022, 57 (07) :1717-1739
[23]   New thermoelastic technique for detection of residual stress distribution in solids [J].
QIAN Menglu(Institute of Acoustics. Tongji University .
ChineseJournalofAcoustics, 1995, (02) :97-106
[24]   Thermoelastic-plastic stress analysis in a thermoplastic composite disc [J].
Sayman, O ;
Yanginici, S ;
Sayer, M .
JOURNAL OF REINFORCED PLASTICS AND COMPOSITES, 2005, 24 (01) :21-33
[25]   Stress separation in thermoelastic stress analysis using nonlinearity of the thermoelastic effect [J].
Inoue, H ;
Hirokawa, Y ;
Kishimoto, K .
JSME INTERNATIONAL JOURNAL SERIES A-SOLID MECHANICS AND MATERIAL ENGINEERING, 2004, 47 (03) :305-311
[26]   Thermoelastic Stress Analysis for composite laminates: A numerical investigation [J].
Cappello, Riccardo ;
Pitarresi, Giuseppe ;
Catalanotti, Giuseppe .
COMPOSITES SCIENCE AND TECHNOLOGY, 2023, 241
[27]   THERMOELASTIC STRESS CONCENTRATIONS [J].
BECKER, H ;
BIRD, F .
JOURNAL OF SPACECRAFT AND ROCKETS, 1967, 4 (08) :1091-&
[28]   Thermoelastic stress analysis: An NDE tool for residual stress assessment of metallic alloys [J].
Gyekenyesi, AL .
JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER-TRANSACTIONS OF THE ASME, 2002, 124 (02) :383-387
[29]   Modern Thermoelastic Stress Analysis and Photoacoustic Approaches to the Problem of Residual Stress Detection [J].
Muratikov, K. L. ;
Glazov, A. L. .
JOURNAL OF THERMAL STRESSES, 2009, 32 (04) :322-340
[30]   Buckling of automatic transmission clutch plates due to thermoelastic/plastic residual stresses [J].
Audebert, N ;
Barber, JR ;
Zagrodzki, P .
JOURNAL OF THERMAL STRESSES, 1998, 21 (3-4) :309-326