Super-aligned carbon nanotube (CNT) thin films offer the capability to be placed into compact lightweight sound sources for active noise control, loudspeaker, or other acoustic applications. The super-aligned CNT films generate thermoacoustically induced oscillations to generate sound. This occurs through the use of a dynamic signal, such as applying an alternating current in the audio frequency range to the thin film. This mechanism is carried out through joule heating which heats the air above the surface, thereby producing sound waves from periodic air vibration. Here, we report an investigation of the sound pressure and thermal properties of advanced carbon nanotube thin films with an emphasis to address the signal distortion issue
Thin carbon nanotube (CNT) sheets are excellent materials for small thermoacoustic (TA) devices. The...
Recent developments of ultra-low heat capacity nanostructured materials revived the interest in the ...
In this work, we investigate the thermal and acoustic frequency responses of nanostructured thermoac...
We found that very thin carbon nanotube films, once fed by sound frequency electric currents, could ...
Carbon Nanotube (CNT) thin film speakers produce sound with the thermoacoustic effect. Alternating c...
© 2014 Institute of Noise Control Engineering. The carbon nanotube (CNT) thermophone has been explor...
Carbon nanotube (CNT) thin film speakers produce sound with the thermoacoustic effect. Better unders...
Compared to moving coil loudspeakers, carbon nanotube (CNT) loudspeakers are extremely lightweight a...
© 2016 Acoustical Society of America. Carbon nanotube thermophones can create acoustic waves from 1 ...
We report an experimental measurement of the acoustic signal emitted from an individual suspended ca...
Abstract Completely suspended nano-thinfilms (NTFs) can be fabricated by drawing carbon nanotube (CN...
© 2016 Acoustical Society of America. Carbon nanotube (CNT) thin film speakers produce sound with th...
Carbon nanotube (CNT) speakers are thin film, flexible, light weight, and acoustically transparent t...
International audienceThis letter presents experimental results concerning a thin film bulk acoustic...
Third sound is studied for superfluid films of 4He adsorbed on multiwall carbon nanotubes packed int...
Thin carbon nanotube (CNT) sheets are excellent materials for small thermoacoustic (TA) devices. The...
Recent developments of ultra-low heat capacity nanostructured materials revived the interest in the ...
In this work, we investigate the thermal and acoustic frequency responses of nanostructured thermoac...
We found that very thin carbon nanotube films, once fed by sound frequency electric currents, could ...
Carbon Nanotube (CNT) thin film speakers produce sound with the thermoacoustic effect. Alternating c...
© 2014 Institute of Noise Control Engineering. The carbon nanotube (CNT) thermophone has been explor...
Carbon nanotube (CNT) thin film speakers produce sound with the thermoacoustic effect. Better unders...
Compared to moving coil loudspeakers, carbon nanotube (CNT) loudspeakers are extremely lightweight a...
© 2016 Acoustical Society of America. Carbon nanotube thermophones can create acoustic waves from 1 ...
We report an experimental measurement of the acoustic signal emitted from an individual suspended ca...
Abstract Completely suspended nano-thinfilms (NTFs) can be fabricated by drawing carbon nanotube (CN...
© 2016 Acoustical Society of America. Carbon nanotube (CNT) thin film speakers produce sound with th...
Carbon nanotube (CNT) speakers are thin film, flexible, light weight, and acoustically transparent t...
International audienceThis letter presents experimental results concerning a thin film bulk acoustic...
Third sound is studied for superfluid films of 4He adsorbed on multiwall carbon nanotubes packed int...
Thin carbon nanotube (CNT) sheets are excellent materials for small thermoacoustic (TA) devices. The...
Recent developments of ultra-low heat capacity nanostructured materials revived the interest in the ...
In this work, we investigate the thermal and acoustic frequency responses of nanostructured thermoac...