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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Giant electrostrictive response in poly(vinylidene fluoride-hexafluoropropylene) copolymers
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Giant electrostrictive response in poly(vinylidene fluoride-hexafluoropropylene) copolymers

机译:聚偏二氟乙烯-六氟丙烯共聚物中的巨大电致伸缩响应

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摘要

Electrostrictive strains were measured in three different polymeric materials: a low modulus polyurethane elastomer, previously studied by Scheinbeim et al. (1994), and two higher modulus random copolymers of poly(vinylidene fluoride-hexafluoropropylene) [P(VDF-HFP)] with 5% and 15% HFP content. Measurements at increasing voltage (electric fields ranging from 0 to 60 MV/m) were taken using an air gap capacitance system and then converted to sample thickness. Copolymer samples with different thermal histories were compared, ice water quenched, air quenched, and slow cooled, for both compositions. The ice water-quenched 5% P(VDF-HFP) copolymer exhibited the highest strain response (>4%) with a dielectric constant of 13.9. The previously studied polyurethane elastomer exhibited the second highest strain response, >3%, with the lowest dielectric constant, 8.5. The ice water-quenched 15% HFP copolymer exhibited the lowest strain response among the three polymeric materials tested, ≈3%, with a dielectric constant of 12.2. The strain energy density of the 5% HFP ice water-quenched copolymer, 1/2 YSm2 (1/2 Young's modulus, Y, times the maximum electrostrictive strain, Smax squared), is the largest known for any semi-crystalline polymer: 0.88J/cm3.
机译:在三种不同的聚合物材料中测量了电致伸缩应变:一种先前由Scheinbeim等人研究的低模量聚氨酯弹性体。 (1994),以及两种HFP含量分别为5%和15%的聚(偏二氟乙烯-六氟丙烯)[P(VDF-HFP)]较高模量的无规共聚物。使用气隙电容系统在增加的电压下(电场范围为0至60 MV / m)进行测量,然后转换为样品厚度。对于两种组合物,比较了具有不同热历史的共聚物样品,冰水淬火,空气淬火和慢冷。冰水淬灭的5%P(VDF-HFP)共聚物表现出最高的应变响应(> 4%),介电常数为13.9。先前研究的聚氨酯弹性体表现出第二高的应变响应,> 3%,最低的介电常数8.5。冰水淬火的15%HFP共聚物在三种测试的聚合材料中表现出最低的应变响应,≈3%,介电常数为12.2。 5%HFP冰水淬灭共聚物 1 / 2 YS m 2 的应变能密度( 1 / 2 杨氏模量Y乘以最大电致伸缩应变S max 平方)是已知的任何半结晶聚合物中最大的:0.88J / cm 3

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