Thermoelastic Stress Analysis (TSA) is a full-field technique for experimental stress analysis that is based on infra-red thermography. The technique has proved to be extremely effective for studying elastic stress fields and is now well established. It is based on the measurement of the temperature change that occurs as a result of a stress change. As residual stress is essentially a mean stress it is accepted that the linear form of the TSA relationship cannot be used to evaluate residual stresses. However, there are situations where this linear relationship is not valid or departures in material properties due to manufacturing procedures have enabled evaluations of residual stresses. The purpose of this paper is to review the current sta...
All the studies on the thermoelastic behaviour of materials, including the revised higher order theo...
The thermoelastic effect describes a linear relationship between change in body ...
The thermoelastic effect describes a linear relationship between change in body temperature and sta...
The work described in this thesis considers the application of thermoelastic stress analysis (TSA) t...
The work described in this thesis considers the application of thermoelastic stress analysis (TSA) t...
Plastic deformation causes very small changes in the thermoelastic response of metallic materials; t...
This study focused on the application of the Thermoelastic Stress Analysis (TSA) technique as a tool...
A modified methodology is proposed in which only a single transient load is used for the TSA measure...
During manufacturing, certain propulsion components that will be used in a cyclic fatigue environmen...
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; ...
Thermoelastic analysis is a recently developed full-field, no-contact technique based on detecting t...
Thermoelastic stress analysis (TSA) is used to assess the effect of plastic deformation in small-dia...
Abstract. Plastic deformation causes very small changes in the thermoelastic response of metallic ma...
Thermoelastic stress analysis (TSA) is often regarded as a laboratory based technique due to its req...
All the studies on the thermoelastic behaviour of materials, including the revised higher order theo...
The thermoelastic effect describes a linear relationship between change in body ...
The thermoelastic effect describes a linear relationship between change in body temperature and sta...
The work described in this thesis considers the application of thermoelastic stress analysis (TSA) t...
The work described in this thesis considers the application of thermoelastic stress analysis (TSA) t...
Plastic deformation causes very small changes in the thermoelastic response of metallic materials; t...
This study focused on the application of the Thermoelastic Stress Analysis (TSA) technique as a tool...
A modified methodology is proposed in which only a single transient load is used for the TSA measure...
During manufacturing, certain propulsion components that will be used in a cyclic fatigue environmen...
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; ...
Thermoelastic analysis is a recently developed full-field, no-contact technique based on detecting t...
Thermoelastic stress analysis (TSA) is used to assess the effect of plastic deformation in small-dia...
Abstract. Plastic deformation causes very small changes in the thermoelastic response of metallic ma...
Thermoelastic stress analysis (TSA) is often regarded as a laboratory based technique due to its req...
All the studies on the thermoelastic behaviour of materials, including the revised higher order theo...
The thermoelastic effect describes a linear relationship between change in body ...
The thermoelastic effect describes a linear relationship between change in body temperature and sta...