AbstractSensor structures for non-destructive testing could successfully deposited by INKtelligent printing®. Metal strain gauges are fabricated by Aerosol Jet® technology, starting with deposition of a polymer isolation layer, followed by a printed metal layer and at least an encapsulation to protect the printed sensor. Characterizations of printed and sintered sensors show a good densification of the porous material which allows high electrical conductivity up to 70 % of bulk value. Performance tests of printed sensors show a reproducible and reliable functionality in terms of strain measurements
Accurate, real-time monitoring of strain in fuel, cladding, and structural components of nuclear rea...
Accurate, real-time monitoring of strain in fuel, cladding, and structural components of nuclear rea...
Accurate, real-time monitoring of strain in fuel, cladding, and structural components of nuclear rea...
AbstractSensor structures for non-destructive testing could successfully deposited by INKtelligent p...
Sensor structures for non-destructive testing could successfully deposited by INKtelligent printing....
Strain sensors based on a change in resistance are well established for the measurement of forces, s...
Strain sensors based on a change in resistance are well established for the measurement of forces, s...
The present study focuses on printing strain sensors directly on tensile test specimens using inkjet...
Additive manufacturing (AM) also commonly known as 3D-printing is a manufacturing method which creat...
Inkjet printing is a promising low-cost fabrication technique capable of depositing functional mater...
Inkjet printing is a promising low-cost fabrication technique capable of depositing functional mater...
As Additive manufacturing is getting more attention these days, there is an increase interest in pri...
Printing sensors and electronics directly on the objects is very attractive for producing smart devi...
In this paper, resistive strain gages designed and fabricated in inkjet printing technology with thr...
This paper reports progress in sensor fabrication by the conductive lithographic film (CLF) printing...
Accurate, real-time monitoring of strain in fuel, cladding, and structural components of nuclear rea...
Accurate, real-time monitoring of strain in fuel, cladding, and structural components of nuclear rea...
Accurate, real-time monitoring of strain in fuel, cladding, and structural components of nuclear rea...
AbstractSensor structures for non-destructive testing could successfully deposited by INKtelligent p...
Sensor structures for non-destructive testing could successfully deposited by INKtelligent printing....
Strain sensors based on a change in resistance are well established for the measurement of forces, s...
Strain sensors based on a change in resistance are well established for the measurement of forces, s...
The present study focuses on printing strain sensors directly on tensile test specimens using inkjet...
Additive manufacturing (AM) also commonly known as 3D-printing is a manufacturing method which creat...
Inkjet printing is a promising low-cost fabrication technique capable of depositing functional mater...
Inkjet printing is a promising low-cost fabrication technique capable of depositing functional mater...
As Additive manufacturing is getting more attention these days, there is an increase interest in pri...
Printing sensors and electronics directly on the objects is very attractive for producing smart devi...
In this paper, resistive strain gages designed and fabricated in inkjet printing technology with thr...
This paper reports progress in sensor fabrication by the conductive lithographic film (CLF) printing...
Accurate, real-time monitoring of strain in fuel, cladding, and structural components of nuclear rea...
Accurate, real-time monitoring of strain in fuel, cladding, and structural components of nuclear rea...
Accurate, real-time monitoring of strain in fuel, cladding, and structural components of nuclear rea...