Finite element calculations have been performed on a T-septum waveguide to investigate the possibility of heating a lossy dielectric film coated on a metal surface using microwaves. The results indicate that additional lossless dielectric loading is required above the septum to provide the necessary electric field to heat the lossy film. A parametric study reveals that significant power deposition can occur in the film provided the permittivity of the dielectric loading is high. Measurements on an applicator have shown that the temperature of a lossy film painted on a metal surface can be increased by more than 40°C. The temperature is related to thickness of the film, septum height, and the position and permittivity of the low loss dielect...
[EN] Microwave-assisted processes have recognized advantages over more conventional heating techniqu...
Microwave processing of materials is a relatively new technology advancement alternative that provid...
During microwave heating of materials, the efficiency of microwave heating depends on the materials’...
The temperature rise in a material modifies its physical properties, particularly its dielectric per...
Dielectric response and electromagnetic knowledge are essential for assessing microwave processing s...
The principles of microwave heating as applied to industrial processing are outlined and the basic d...
Microwave heating is caused by the ability of the materials to absorb microwave energy and convert i...
The material properties of greatest importance in microwave processing of a dielectric are the compl...
Typically dielectric materials are used as a substrate for the fabrication of thin films. Some of th...
Microwaves are electromagnetic radiation with wavelength ranging from 1 mm to 1 m in free space with...
The benefits of microwave technology in materials processing is well documented and researched. It o...
Presented are results of a preliminary research on determining a possibility to use microwave radiat...
Microwave heating is rapidly emerging as an effective and efficient tool in various technological an...
A mathematical model for predicting microwave heating rates and associated temperature distributions...
Dual-section variable frequency microwave systems enable rapid, controllable heating of materials wi...
[EN] Microwave-assisted processes have recognized advantages over more conventional heating techniqu...
Microwave processing of materials is a relatively new technology advancement alternative that provid...
During microwave heating of materials, the efficiency of microwave heating depends on the materials’...
The temperature rise in a material modifies its physical properties, particularly its dielectric per...
Dielectric response and electromagnetic knowledge are essential for assessing microwave processing s...
The principles of microwave heating as applied to industrial processing are outlined and the basic d...
Microwave heating is caused by the ability of the materials to absorb microwave energy and convert i...
The material properties of greatest importance in microwave processing of a dielectric are the compl...
Typically dielectric materials are used as a substrate for the fabrication of thin films. Some of th...
Microwaves are electromagnetic radiation with wavelength ranging from 1 mm to 1 m in free space with...
The benefits of microwave technology in materials processing is well documented and researched. It o...
Presented are results of a preliminary research on determining a possibility to use microwave radiat...
Microwave heating is rapidly emerging as an effective and efficient tool in various technological an...
A mathematical model for predicting microwave heating rates and associated temperature distributions...
Dual-section variable frequency microwave systems enable rapid, controllable heating of materials wi...
[EN] Microwave-assisted processes have recognized advantages over more conventional heating techniqu...
Microwave processing of materials is a relatively new technology advancement alternative that provid...
During microwave heating of materials, the efficiency of microwave heating depends on the materials’...