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首页> 外文期刊>Journal of Materials Science >Influence of BaTiO3 on damping and dielectric properties of filled polyurethane/unsaturated polyester resin interpenetrating polymer networks
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Influence of BaTiO3 on damping and dielectric properties of filled polyurethane/unsaturated polyester resin interpenetrating polymer networks

机译:BaTiO3对填充聚氨酯/不饱和聚酯树脂互穿聚合物网络阻尼和介电性能的影响

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A series of BaTiO3 fiber and nanopowder unfilled and filled interpenetrating polymer networks (IPNs) composed of polyurethane (PU) and unsaturated polyester resin (UP) are prepared by simultaneous polymerization process. The effect of PU/UP component ratios, the types and amounts of BaTiO3 filled, the polarization treatment to filled IPNs, on the damping properties are investigated by dynamic mechanical thermal analyzer (DMTA). The morphology and microstructures of unfilled and filled IPNs are examined by transmission electron microscope (TEM). The dielectric loss and dielectric constant at different temperatures are studied by AC impedance analyzer. Moreover, the relationship between damping and dielectric properties is discussed in terms of dielectric constant and dielectric loss measured. The results show that the PU/UP component ratios in IPNs, the types of filler, and the amount of nanopowder added all affect the damping behaviors and degree of phase separation of unfilled and filled IPNs. Through polarization treatment, the filled IPNs exhibit synergistic action in systems caused by elastomeric damping mechanism, interfacial frictional damping mechanism and piezoelectric damping mechanisms. The maximum value of E" of filled IPNs with 70% BaTiO3 increase above 100 MPa and the temperature ranges of tan delta > 0.3 is higher than 100 degrees C compared with unfilled IPNs. Moreover, the maximum value of E" and the temperature ranges of tan delta > 0.3 increases dramatically after polarizing process. The dielectric properties and its relation with damping properties studies reveal that the temperature ranges exhibit excellent consistency of maximum dielectric loss and dielectric constant with damping loss factor. (c) 2005 Springer Science + Business Media, Inc.
机译:通过同时聚合,制备了一系列由聚氨酯(PU)和不饱和聚酯树脂(UP)组成的BaTiO3纤维和纳米粉未填充和填充的互穿聚合物网络(IPN)。通过动态机械热分析仪(DMTA)研究了PU / UP组分比,填充的BaTiO3的类型和数量,对填充的IPN的极化处理对阻尼性能的影响。通过透射电子显微镜(TEM)检查未填充和填充的IPN的形态和微观结构。用交流阻抗分析仪研究了不同温度下的介电损耗和介电常数。此外,根据介电常数和测得的介电损耗讨论了阻尼和介电性能之间的关系。结果表明,IPN中的PU / UP组分比,填料的类型以及添加的纳米粉的量都影响未填充和填充IPN的阻尼行为和相分离程度。通过极化处理,填充的IPN在由弹性体阻尼机制,界面摩擦阻尼机制和压电阻尼机制引起的系统中表现出协同作用。与未填充的IPN相比,含70%BaTiO3的填充IPN的E“最大值增加到100 MPa以上,且tanδ> 0.3的温度范围高于100摄氏度。极化过程后,tanδ> 0.3急剧增加。介电性能及其与阻尼性能的关系研究表明,温度范围具有最大的介电损耗一致性和介电常数与阻尼损耗因子的一致性。 (c)2005年Springer Science + Business Media,Inc.

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