NoSpectroscopic techniques have the potential to provide powerful, molecular-specific, non-invasive measurements on polymers during melt processing operations. An exploration is reported of the application and assessment of sensitivity of in-process vibrational spectroscopy¿on-line mid-infrared (MIR), on-line near-infrared (NIR), in-line NIR and in-line Raman¿for monitoring of single screw extrusion of high-density polyethylene and polypropylene blends. These vibrational spectroscopic techniques are compared with novel in-line ultrasound velocity measurements, which were acquired simultaneously, to assess the sensitivity of each method to changes in blend composition and to explore the suitability for their use in real time process monitori...
grantor: University of TorontoAn in-line monitoring system is composed of a process/monit...
grantor: University of TorontoAn in-line monitoring system is composed of a process/monit...
Real-time and in-line ultrasonic diagnostics of polymer extrusion and injection molding processes to...
A laboratory scale twin screw extruder has been interfaced with a near infrared (NIR) spectrometer v...
A polymer is rarely used as a pure material and the baseline physical, chemical and rheological prop...
A polymer is rarely used as a pure material and the baseline physical, chemical and rheological prop...
This research was focused on developing fiber optic molecular spectroscopic techniques to provide in...
With the increasing demand for industrial product quality improvement and production rationalization...
With the increasing demand for industrial product quality improvement and production rationalization...
With the increasing demand for industrial product quality improvement and production rationalization...
With the increasing demand for industrial product quality improvement and production rationalization...
Three studies of polymer systems have been carried out using vibrational spectroscopic techniques. T...
A device for monitoring extrusion processes, esp. the extrusion of plastic-bonded propellants and ex...
Process analytical techniques (PAT) involve the monitoring and control of physical and chemi...
Supplemental material for Application of Raman Spectroscopy for In-Line Measurement of Dispersion Un...
grantor: University of TorontoAn in-line monitoring system is composed of a process/monit...
grantor: University of TorontoAn in-line monitoring system is composed of a process/monit...
Real-time and in-line ultrasonic diagnostics of polymer extrusion and injection molding processes to...
A laboratory scale twin screw extruder has been interfaced with a near infrared (NIR) spectrometer v...
A polymer is rarely used as a pure material and the baseline physical, chemical and rheological prop...
A polymer is rarely used as a pure material and the baseline physical, chemical and rheological prop...
This research was focused on developing fiber optic molecular spectroscopic techniques to provide in...
With the increasing demand for industrial product quality improvement and production rationalization...
With the increasing demand for industrial product quality improvement and production rationalization...
With the increasing demand for industrial product quality improvement and production rationalization...
With the increasing demand for industrial product quality improvement and production rationalization...
Three studies of polymer systems have been carried out using vibrational spectroscopic techniques. T...
A device for monitoring extrusion processes, esp. the extrusion of plastic-bonded propellants and ex...
Process analytical techniques (PAT) involve the monitoring and control of physical and chemi...
Supplemental material for Application of Raman Spectroscopy for In-Line Measurement of Dispersion Un...
grantor: University of TorontoAn in-line monitoring system is composed of a process/monit...
grantor: University of TorontoAn in-line monitoring system is composed of a process/monit...
Real-time and in-line ultrasonic diagnostics of polymer extrusion and injection molding processes to...