材料科学
压电
声能
降噪系数
吸收(声学)
导电体
聚偏氟乙烯
电阻式触摸屏
复合材料
能量收集
碳纳米管
多孔性
声学
能量(信号处理)
声音(地理)
聚合物
电气工程
物理
统计
工程类
数学
作者
Mojtaba Rahimabady,Eleftherios Christos Statharas,Kui Yao,Meysam Sharifzadeh Mirshekarloo,Shuting Chen,Francis E. H. Tay
摘要
A concept of hybrid local piezoelectric and electrical conductive functions for improving airborne sound absorption is proposed and demonstrated in composite foam made of porous polar polyvinylidene fluoride (PVDF) mixed with conductive single-walled carbon nanotube (SWCNT). According to our hybrid material function design, the local piezoelectric effect in the PVDF matrix with the polar structure and the electrical resistive loss of SWCNT enhanced sound energy conversion to electrical energy and subsequently to thermal energy, respectively, in addition to the other known sound absorption mechanisms in a porous material. It is found that the overall energy conversion and hence the sound absorption performance are maximized when the concentration of the SWCNT is around the conductivity percolation threshold. For the optimal composition of PVDF/5 wt. % SWCNT, a sound reduction coefficient of larger than 0.58 has been obtained, with a high sound absorption coefficient higher than 50% at 600 Hz, showing their great values for passive noise mitigation even at a low frequency.
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