The thermoelastic effect describes a linear relationship between change in body temperature and state of stress in the presence of adiabatic conditions. This approach considers the material properties constant with temperature, which is not correct for all materials. Experimental results and a review of the theory, especially for the titanium and some alloys of aluminium, have shown that the thermoelastic signal is also dependent of mean stress of the material. The use of titanium in various fields of application makes interesting use of thermoelastic technique as full field stress analysis technique. However, it is necessary to make a correction of the measure in relation to the mean stress. The possibility to measure the mean str...
Thermoelastic analysis is a recently developed full-field, no-contact technique based on detecting t...
Thermoelastic Stress Analysis is based on detection of a temperature change due to a change in stres...
The material assumptions made to facilitate Thermoelastic Stress Analysis (TSA) are linear elasticit...
The thermoelastic effect describes a linear relationship between change in body ...
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 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; ...
Thermoelastic Stress Analysis (TSA) is a full-field technique for experimental stress analysis that ...
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...
In thermoelastic stress analysis an infra-red detector is used to obtain the small temperature chang...
A simple method for residual stresses (RS) evaluation in additively manufactured titanium samples is...
Abstract. The material assumptions made to facilitate Thermoelastic Stress Analysis (TSA) are linear...
Thermoelastic analysis is a recently developed full-field, no-contact technique based on detecting t...
Thermoelastic Stress Analysis is based on detection of a temperature change due to a change in stres...
The material assumptions made to facilitate Thermoelastic Stress Analysis (TSA) are linear elasticit...
The thermoelastic effect describes a linear relationship between change in body ...
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 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; ...
Thermoelastic Stress Analysis (TSA) is a full-field technique for experimental stress analysis that ...
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...
In thermoelastic stress analysis an infra-red detector is used to obtain the small temperature chang...
A simple method for residual stresses (RS) evaluation in additively manufactured titanium samples is...
Abstract. The material assumptions made to facilitate Thermoelastic Stress Analysis (TSA) are linear...
Thermoelastic analysis is a recently developed full-field, no-contact technique based on detecting t...
Thermoelastic Stress Analysis is based on detection of a temperature change due to a change in stres...
The material assumptions made to facilitate Thermoelastic Stress Analysis (TSA) are linear elasticit...