Knowledge of the electrical behavior of refractory materials may enable the development and optimization of microwave nondestructive techniques to detect and evaluate changes in their physical properties while the materials are in service. This paper presents the results of a limited and preliminary investigation in which two refractory materials (dense chrome and dense zircon) were subjected to increasing temperature in a furnace and in which a frequency-modulated continuous-wave radar operating in the frequency range of 8-18 GHz radar was used to evaluate their attenuation properties
Molten glass characteristics of temperature, resistivity, and viscosity can be monitored reliably in...
Microwave and millimeter wave nondestructive methods using open-ended sensors have shown great poten...
An ultra-wide band measurement method for determining the complex refractive index of large-volume o...
Knowledge of the electrical behavior of refractory materials may enable the development and optimiza...
Refractory materials used in glass melting furnaces are etched away over time by molten glass. This ...
A frequency-modulated continuous-wave (FM-CW) handheld radar operating in the frequency range of 8-1...
A frequency-modulated continuous-wave (FM-CW) handheld radar operating in the frequency range of 8-1...
Furnaces are among the most crucial components in the glass and metallurgical industry. Nowadays, fu...
The refractory walls of glass tank furnaces degrade during their operational lifetime while prematur...
A systematic study using microwaves to facilitate refractory wall thickness measurements under vario...
By means of microwaves it is possible to perform nondestructive and online capable testing in the do...
Furnaces are the most crucial components in the glass and metallurgical industry. Like any other com...
The use of microwave and millimeter wave nondestructive testing methods utilizing open ended rectang...
With the help of microwave sensors it is possible to characterize nonconductive test objects in nond...
A review of measurement methods of the basic electromagnetic parameters of materials at microwave fr...
Molten glass characteristics of temperature, resistivity, and viscosity can be monitored reliably in...
Microwave and millimeter wave nondestructive methods using open-ended sensors have shown great poten...
An ultra-wide band measurement method for determining the complex refractive index of large-volume o...
Knowledge of the electrical behavior of refractory materials may enable the development and optimiza...
Refractory materials used in glass melting furnaces are etched away over time by molten glass. This ...
A frequency-modulated continuous-wave (FM-CW) handheld radar operating in the frequency range of 8-1...
A frequency-modulated continuous-wave (FM-CW) handheld radar operating in the frequency range of 8-1...
Furnaces are among the most crucial components in the glass and metallurgical industry. Nowadays, fu...
The refractory walls of glass tank furnaces degrade during their operational lifetime while prematur...
A systematic study using microwaves to facilitate refractory wall thickness measurements under vario...
By means of microwaves it is possible to perform nondestructive and online capable testing in the do...
Furnaces are the most crucial components in the glass and metallurgical industry. Like any other com...
The use of microwave and millimeter wave nondestructive testing methods utilizing open ended rectang...
With the help of microwave sensors it is possible to characterize nonconductive test objects in nond...
A review of measurement methods of the basic electromagnetic parameters of materials at microwave fr...
Molten glass characteristics of temperature, resistivity, and viscosity can be monitored reliably in...
Microwave and millimeter wave nondestructive methods using open-ended sensors have shown great poten...
An ultra-wide band measurement method for determining the complex refractive index of large-volume o...