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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >High Power Density Low-Lead-Piezoceramic–Polymer Composite Energy Harvester
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High Power Density Low-Lead-Piezoceramic–Polymer Composite Energy Harvester

机译:高功率密度低铅压电陶瓷-聚合物复合能量收集器

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摘要

Polymer-piezoceramic composites show mutual properties of piezoceramics and polymers that can be efficiently utilized in energy harvesting applications. Here we fabricated 0-3 composite films using high-performance low-lead piezoceramic (x)Bi(Ni1/2Zr1/2)0(3)-(1-x)PbTiOa (BNz-PT) as ceramic filler and polyvinylidene fluoride (PVDF) as polymer matrix. Unlike the conventional morphotropic phase boundary piezoelectrics such as the (1-x)PbTiO3-(x)PbZrO3, the large piezoelectric response of the BNZ-PT can be obtained by poling-induced cubic-like-totetragonal phase transformation. This leads to high piezoelectric coefficient of the PVDF-BNZ-PT composite films as well as highenergy harvesting performance. Composite films with different volume fractions of ceramic showed surface power density of 1.3-3.5 mu W/cm(2) , and volume power density of 72.2-175 mu W/cm(3) using simple bending and unbending movements. Energy harvester in the form of cantilever fixed at both ends showed surface power density of 56.97-163.63 mu W/cm(2) and volume power density of 3165-8165 mu W/cm(3) in response to impact pressure pulses. The generated power from the composite films is comparable to composite energy generators reported to date. The volume power density, however, is highest to the best of our knowledge among the reported 0-3 polymer-piezoceramic composite energy harvesters.
机译:聚合物-压电陶瓷复合材料显示出压电陶瓷和聚合物的共同特性,可在能量收集应用中有效利用。在这里,我们使用高性能低铅压电陶瓷(x)Bi(Ni1 / 2Zr1 / 2)0(3)-(1-x)PbTiOa(BNz-PT)作为陶瓷填料和聚偏二氟乙烯制成了0-3复合膜。 PVDF)作为聚合物基质。不同于传统的同相相界压电材料,例如(1-x)PbTiO3-(x)PbZrO3,可以通过极化诱导立方状到四方相变来获得BNZ-PT的大压电响应。这导致PVDF-BNZ-PT复合膜的高压电系数以及高能量收集性能。使用简单的弯曲和不弯曲运动,具有不同体积分数的陶瓷的复合膜的表面功率密度为1.3-3.5μW / cm(2),体积功率密度为72.2-175μW / cm(3)。悬臂形式固定在两端的能量收集器显示出响应于冲击压力脉冲的表面功率密度为56.97-163.63μW / cm(2)和体积功率密度为3165-8165μW / cm(3)。复合膜产生的功率可与迄今为止报道的复合能量产生器相比。然而,据我们所知,在报告的0-3聚合物-压电陶瓷复合能量采集器中,体积功率密度最高。

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