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 a...
The thermoelastic effect describes a linear relationship between change in body ...
In thermoelastic stress analysis an infra-red detector is used to obtain the small temperature chang...
If the film of a coated part deforms plastically due to operational loads, residual stresses (RS) de...
Abstract. Plastic deformation causes very small changes in the thermoelastic response of metallic ma...
Plastic deformation causes very small changes in the thermoelastic response of m...
Plastic deformation causes very small changes in the thermoelastic response of metallic materials; t...
The work described in this thesis considers the application of thermoelastic stress analysis (TSA) t...
Thermoelastic stress analysis (TSA) is used to assess the effect of plastic deformation in small-dia...
The work described in this thesis considers the application of thermoelastic stress analysis (TSA) t...
The assessment of residual stresses using thermoelastic stress analysis (TSA) relies in theory on sm...
In thermoelastic stress analysis (TSA) it is normal practice to coat metallic specimens withblack pa...
Thermoelastic Stress Analysis (TSA) is a full-field technique for experimental stress analysis that ...
All the studies on the thermoelastic behaviour of materials, including the revised higher order theo...
This study focused on the application of the Thermoelastic Stress Analysis (TSA) technique as a tool...
The thermoelastic effect describes a linear relationship between change in body temperature and sta...
The thermoelastic effect describes a linear relationship between change in body ...
In thermoelastic stress analysis an infra-red detector is used to obtain the small temperature chang...
If the film of a coated part deforms plastically due to operational loads, residual stresses (RS) de...
Abstract. Plastic deformation causes very small changes in the thermoelastic response of metallic ma...
Plastic deformation causes very small changes in the thermoelastic response of m...
Plastic deformation causes very small changes in the thermoelastic response of metallic materials; t...
The work described in this thesis considers the application of thermoelastic stress analysis (TSA) t...
Thermoelastic stress analysis (TSA) is used to assess the effect of plastic deformation in small-dia...
The work described in this thesis considers the application of thermoelastic stress analysis (TSA) t...
The assessment of residual stresses using thermoelastic stress analysis (TSA) relies in theory on sm...
In thermoelastic stress analysis (TSA) it is normal practice to coat metallic specimens withblack pa...
Thermoelastic Stress Analysis (TSA) is a full-field technique for experimental stress analysis that ...
All the studies on the thermoelastic behaviour of materials, including the revised higher order theo...
This study focused on the application of the Thermoelastic Stress Analysis (TSA) technique as a tool...
The thermoelastic effect describes a linear relationship between change in body temperature and sta...
The thermoelastic effect describes a linear relationship between change in body ...
In thermoelastic stress analysis an infra-red detector is used to obtain the small temperature chang...
If the film of a coated part deforms plastically due to operational loads, residual stresses (RS) de...