The acoustic absorption of open-cell polyolefin (PO) foams with densities between 23 and 64 kg/m3 has been measured and compared with that of open-cell polyurethane (PU) foams. Acoustic parameters related to the cellular structure, such as porosity, tortuosity and airflow resistivity, were also measured. PO foams show higher tortuosity and airflow resistivity than the PU open-cell foam; as a consequence, they show a higher absorption coefficient than PU open-cell foam in the frequency range between 1000 and 2000 Hz. We also modeled the acoustic behavior using the Biot-Allard theory with the Johnson approach, fitted using a genetic algorithm. The fits of the acoustic absorption coefficient as a function of frequency were reasonably consisten...
In physiological health, negative effects are felt when unwanted noise is present. Given the negativ...
International audienceEfficient absorbers are important to create a pleasant acoustic environment, o...
4noTraditional models used to predict acoustic properties of poroelastic materials are usually appli...
Polymeric open cell foams are widely used as sound absorbers in sectors such as automobile, aerospac...
Auxetic open cell PU foams have raised some interest in the scientific community for potential engin...
Polymer foams have acoustic absorption properties that play an important role in reducing noise leve...
Flexible polyurethane (PU) foams with varying polyethylene fiber contents were synthesized to improv...
International audienceWe measured the acoustic absorption, in the 0.5–6 kHz frequency range, of poly...
We measured the acoustic absorption, on the 0.5-6 kHz frequency range, of polyurethane foams with me...
We measured the acoustic absorption, on the 0.5-6 kHz frequency range, of polyurethane foams with me...
Metal foams, especially close-celled foams, are generally regarded as poor sound absorbers. This pap...
International audienceWe measured the acoustic absorption, in the 0.5–6 kHz frequency range, of poly...
International audienceWe measured the acoustic absorption, in the 0.5–6 kHz frequency range, of poly...
International audienceWe measured the acoustic absorption, in the 0.5–6 kHz frequency range, of poly...
International audienceWe measured the acoustic absorption, in the 0.5–6 kHz frequency range, of poly...
In physiological health, negative effects are felt when unwanted noise is present. Given the negativ...
International audienceEfficient absorbers are important to create a pleasant acoustic environment, o...
4noTraditional models used to predict acoustic properties of poroelastic materials are usually appli...
Polymeric open cell foams are widely used as sound absorbers in sectors such as automobile, aerospac...
Auxetic open cell PU foams have raised some interest in the scientific community for potential engin...
Polymer foams have acoustic absorption properties that play an important role in reducing noise leve...
Flexible polyurethane (PU) foams with varying polyethylene fiber contents were synthesized to improv...
International audienceWe measured the acoustic absorption, in the 0.5–6 kHz frequency range, of poly...
We measured the acoustic absorption, on the 0.5-6 kHz frequency range, of polyurethane foams with me...
We measured the acoustic absorption, on the 0.5-6 kHz frequency range, of polyurethane foams with me...
Metal foams, especially close-celled foams, are generally regarded as poor sound absorbers. This pap...
International audienceWe measured the acoustic absorption, in the 0.5–6 kHz frequency range, of poly...
International audienceWe measured the acoustic absorption, in the 0.5–6 kHz frequency range, of poly...
International audienceWe measured the acoustic absorption, in the 0.5–6 kHz frequency range, of poly...
International audienceWe measured the acoustic absorption, in the 0.5–6 kHz frequency range, of poly...
In physiological health, negative effects are felt when unwanted noise is present. Given the negativ...
International audienceEfficient absorbers are important to create a pleasant acoustic environment, o...
4noTraditional models used to predict acoustic properties of poroelastic materials are usually appli...