Title :
Microwave system for in-situ dielectric and calorimetric measurements in a wide temperature range using a TE111-mode cavity
Author :
Ramopoulos, Vasileios ; Soldatov, Sergey ; Link, Guido ; Kayser, Thorsten ; Gehringer, Michael ; Jelonnek, John
Author_Institution :
IHM, Karlsruhe Inst. of Technol. (KIT), Karlsruhe, Germany
Abstract :
The various developments in microwave material processing have shown that the microwave curing of fiber reinforced plastics can be much more energy efficient compared to conventional heating methods. This motivated the development of different microwave systems and processes. Nevertheless, the accurate knowledge of the dielectric properties of materials at the carrier frequency is one of the keys for successful design of microwave applicators and processes. Therefore, a system for accurate in-situ monitoring of the dielectric and the calorimetric properties during microwave heating has been developed. The dielectric characterization bases on the cavity perturbation technique. The microwave source operating at 2.45 GHz is utilized for both, the cavity resonance properties measurements and the dielectric heating of the material at the same time. A TE111-mode cylindrical cavity having an unloaded quality factor of 11.500 is used as microwave applicator.
Keywords :
Q-factor; calorimetry; cavity resonators; condition monitoring; curing; dielectric heating; fibre reinforced plastics; microwave materials processing; microwave measurement; permittivity measurement; TE11-mode cylindrical cavity; calorimetric properties; cavity perturbation technique; cavity resonance properties measurement; dielectric heating; dielectric properties; fiber reinforced plastics; frequency 2.45 GHz; in-situ monitoring; microwave applicator; microwave curing; microwave heating; microwave material processing; microwave source; microwave systems; quality factor; Cavity resonators; Electromagnetic heating; Microwave amplifiers; Permittivity measurement; Temperature measurement; Cavity perturbation method; dielectric properties; microwave calorimetry;
Conference_Titel :
Microwave Symposium (IMS), 2015 IEEE MTT-S International
Conference_Location :
Phoenix, AZ
DOI :
10.1109/MWSYM.2015.7166906