A new and easy-to-fabricate strain sensor has been developed, based on fiber Bragg grating (FBG) technology embedded into a thermoplastic polyurethane filament using a 3-dimensional (3D) printer. Taking advantage of the flexibility and elastic properties of the thermoplastic polyurethane material, the embedding of the FBG provides durable protection with enhanced flexibility and sensitivity, as compared to the use of a bare FBG. Results of an evaluation of its performance have shown that the FBG sensors embedded in this way can be applied effectively in the measurement of strain, with an average wavelength responsivity of 0.013 5 nm/cm of displacement for tensile strain and −0.014 2 nm/cm for compressive strain, both showing a linearity val...
Viscoelasticity is an effect seen in a wide range of materials and it affects the rel...
Fiber Bragg Grating (FBG) sensing has been intensively studied in the application of smart structure...
In this paper, we present two different ways to embed polymer fibre Bragg gratings (FBGs) into polym...
A new and easy-to-fabricate strain sensor has been developed, based on fiber Bragg grating (FBG) tec...
A new design of optical Fiber Bragg Grating (FBG)-based sensor for the measurement of torsion (twist...
This paper reports the first demonstration of a silica fibre Bragg grating (SOFBG) embedded in an FD...
The first demonstration of a polymer optical fibre Bragg grating (POFBG) embedded in a 3-D printed s...
Monitoring of stress/strain is of particular importance to understand better the mechanical pa-ramet...
AbstractThis paper reports on the development of flexible polymer sensing foils based on embedded fi...
Waveguides with Bragg gratings realized on a flat polymer foil are promising candidates for advanced...
In this article, we study the possibility to use a pair of specifically designed microstructured opt...
A highly flexible sensing skin with embedded polymer optical fibre Bragg gratings is characterised T...
In this paper, we report on the strain and pressure testing of highly flexible skins embedded with B...
The design and performance of an innovative high-precision extensometer system, fabricated inexpensi...
Viscoelasticity is an effect seen in a wide range of materials and it affects the rel...
Fiber Bragg Grating (FBG) sensing has been intensively studied in the application of smart structure...
In this paper, we present two different ways to embed polymer fibre Bragg gratings (FBGs) into polym...
A new and easy-to-fabricate strain sensor has been developed, based on fiber Bragg grating (FBG) tec...
A new design of optical Fiber Bragg Grating (FBG)-based sensor for the measurement of torsion (twist...
This paper reports the first demonstration of a silica fibre Bragg grating (SOFBG) embedded in an FD...
The first demonstration of a polymer optical fibre Bragg grating (POFBG) embedded in a 3-D printed s...
Monitoring of stress/strain is of particular importance to understand better the mechanical pa-ramet...
AbstractThis paper reports on the development of flexible polymer sensing foils based on embedded fi...
Waveguides with Bragg gratings realized on a flat polymer foil are promising candidates for advanced...
In this article, we study the possibility to use a pair of specifically designed microstructured opt...
A highly flexible sensing skin with embedded polymer optical fibre Bragg gratings is characterised T...
In this paper, we report on the strain and pressure testing of highly flexible skins embedded with B...
The design and performance of an innovative high-precision extensometer system, fabricated inexpensi...
Viscoelasticity is an effect seen in a wide range of materials and it affects the rel...
Fiber Bragg Grating (FBG) sensing has been intensively studied in the application of smart structure...
In this paper, we present two different ways to embed polymer fibre Bragg gratings (FBGs) into polym...