纳米线- a1203填充PBT/GF复合材料的低温介电性能和力学性能

Demei Yu, Yunchuan Xie, W. Wan, Xiusheng Guo, Ying Xi, Zhantong Mao, Long‐Biao Huang
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引用次数: 2

摘要

采用宏观性能测试和微观结构分析相结合的方法,研究了纳米线-氧化铝填充PBT/GF(玻璃纤维)复合材料的低温介电性能和力学性能。与PBT/GF/ al2o3三元体系相比,PBT/GF/ al2o3三元体系的抗拉强度和冲击强度均有所提高。扫描电镜观察断口表现出典型的增韧特征,这可能与“裂纹桥接”增韧机制有关。同时,POM研究表明,由于纳米颗粒的成核作用,三元复合材料的球晶织构减弱。DSC和WAXD分析表明,纳米线al2o3会阻碍晶体生长,降低结晶度。随着Al2O3含量的增加,复合材料的低温介电谱显示出向低温区转移的广泛γ损失过程,表明纳米线的存在可能促进了PBT基体的分子运动,提高了低温韧性。适量的Al2O3也有助于减少微缺陷,从而提高体系的电强度
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Cryogenic Dielectric and Mechanical Properties of Nanowire-A1203 Filled PBT/GF Composites
The cryogenic dielectric and mechanical properties of nanowire-Al 2O3 filled PBT/GF (glass fiber) composites are investigated by combing macro-performances testing and microstructures analysis. Compared with PBT/GF composites, the PBT/GF/Al2O 3 ternary systems present improved tensile strength as well as impact strength. The fracture surface shows a typical toughened characteristic under SEM observation, which may be explained by the "crack bridging" toughening mechanism. At the same time, POM study indicates diminished spherulitic texture for the three phase composites, which is due to nucleating effect of the nanoparticles. DSC and WAXD analysis suggest that nanowire-Al2O3 can hinder the crystal growth and lower the degree of crystallinity. Cryogenic dielectric spectra of the composites showed a broad gamma loss process shifting to low temperature region with the increasing content of Al2O3, which suggested that the existence of the nanowire might facilitate the molecular motions of PBT matrix and improved the low temperature toughness. Suitable amount of Al2O3 can also be helpful to reduce the micro-defects, which may contribute to the higher electrical strength of the systems
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