Electrical resistance strain gauges are increasingly used for the determination of the strain field in composite components. The effect of the angular misalignment of a strain gauge rosette on the determination of the strains in a composite material is investigated in this paper. The theoretical analysis shows that the strain error along the principal material directions depends on the difference of principal strains, on the angular misalignment of the rosette and on the angle between the maximum principal strain and the fibre direction. The paper also shows experimental evidence for the theoretical analysis
In mechanical characterization methods, the mechanical properties of multiple material test specimen...
The focus of the work is meso-scale analysis (scale level of the fabric unit cell) of textile compos...
When embedded, optical fibre Bragg gratings are considered to be very valuable in terms of strain me...
Electrical resistance strain gauges are increasingly used for the determination of the strain field...
The present work analyses the errors affecting the strains measured by misaligned strain gauges inst...
This article gives an overview on the application of strain gauge techniques to the analysis of the...
Existing strain gage technologies as applied to orthotropic composite materials are reviewed. The bo...
The application of strain gauges as recommended by the ASTM standards provides accurate strain measu...
Composite materials with a polymer matrix are used on a large scale to make light structures that in...
This paper presents an investigation of errors that are likely to creep in the evaluation of princi...
The aim of the present work is to investigate the accuracy of fiber-optic strain transducer related ...
The determination of strain fields based on displacements obtained via DIC at the micro-strain level...
Characterizing the in-plane shear response of thermoplastic composite materials is receiving conside...
The results of strain measuring experiments, with the help of rosettes consisting of fiber Bragg gra...
It has long been known that the inclusion of fibreoptic strain sensors into composite materials prod...
In mechanical characterization methods, the mechanical properties of multiple material test specimen...
The focus of the work is meso-scale analysis (scale level of the fabric unit cell) of textile compos...
When embedded, optical fibre Bragg gratings are considered to be very valuable in terms of strain me...
Electrical resistance strain gauges are increasingly used for the determination of the strain field...
The present work analyses the errors affecting the strains measured by misaligned strain gauges inst...
This article gives an overview on the application of strain gauge techniques to the analysis of the...
Existing strain gage technologies as applied to orthotropic composite materials are reviewed. The bo...
The application of strain gauges as recommended by the ASTM standards provides accurate strain measu...
Composite materials with a polymer matrix are used on a large scale to make light structures that in...
This paper presents an investigation of errors that are likely to creep in the evaluation of princi...
The aim of the present work is to investigate the accuracy of fiber-optic strain transducer related ...
The determination of strain fields based on displacements obtained via DIC at the micro-strain level...
Characterizing the in-plane shear response of thermoplastic composite materials is receiving conside...
The results of strain measuring experiments, with the help of rosettes consisting of fiber Bragg gra...
It has long been known that the inclusion of fibreoptic strain sensors into composite materials prod...
In mechanical characterization methods, the mechanical properties of multiple material test specimen...
The focus of the work is meso-scale analysis (scale level of the fabric unit cell) of textile compos...
When embedded, optical fibre Bragg gratings are considered to be very valuable in terms of strain me...