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Preparation and Sound Absorption Properties of a Barium Titanate/Nitrile Butadiene Rubber–Polyurethane Foam Composite with Multilayered Structure

机译:多层结构钛酸钡/丁腈橡胶-聚氨酯泡沫复合材料的制备及吸声性能

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摘要

Barium titanateitrile butadiene rubber (BT/NBR) and polyurethane (PU) foam were combined to prepare a sound-absorbing material with an alternating multilayered structure. The effects of the cell size of PU foam and the alternating unit number on the sound absorption property of the material were investigated. The results show that the sound absorption efficiency at a low frequency increased when decreasing the cell size of PU foam layer. With the increasing of the alternating unit number, the material shows the sound absorption effect in a wider bandwidth of frequency. The BT/NBR-PU foam composites with alternating multilayered structure have an excellent sound absorption property at low frequency due to the organic combination of airflow resistivity, resonance absorption, and interface dissipation.
机译:结合钛酸钡/丁腈橡胶(BT / NBR)和聚氨酯泡沫(PU)以制备具有交替多层结构的吸声材料。研究了聚氨酯泡沫的泡孔尺寸和交替单位数对材料吸声性能的影响。结果表明,当减小PU泡沫层的泡孔尺寸时,低频处的吸声效率增加。随着交变单元数的增加,材料在更宽的频率带宽内表现出吸声效果。由于气流阻力,共振吸收和界面耗散的有机结合,具有交替多层结构的BT / NBR-PU泡沫复合材料在低频下具有出色的吸声性能。

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