伍云健, 胡益然, 林慧, 方锐, 蔡福进, 张晓星. 基于席夫碱基的可降解环氧绝缘材料性能研究[J]. 高电压技术, 2023, 49(11): 4490-4497. DOI: 10.13336/j.1003-6520.hve.20221757
引用本文: 伍云健, 胡益然, 林慧, 方锐, 蔡福进, 张晓星. 基于席夫碱基的可降解环氧绝缘材料性能研究[J]. 高电压技术, 2023, 49(11): 4490-4497. DOI: 10.13336/j.1003-6520.hve.20221757
WU Yunjian, HU Yiran, LIN Hui, FANG Rui, CAI Fujin, ZHANG Xiaoxing. Study on Properties of Degradable Epoxy Insulation Materials Based on Schiff Base[J]. High Voltage Engineering, 2023, 49(11): 4490-4497. DOI: 10.13336/j.1003-6520.hve.20221757
Citation: WU Yunjian, HU Yiran, LIN Hui, FANG Rui, CAI Fujin, ZHANG Xiaoxing. Study on Properties of Degradable Epoxy Insulation Materials Based on Schiff Base[J]. High Voltage Engineering, 2023, 49(11): 4490-4497. DOI: 10.13336/j.1003-6520.hve.20221757

基于席夫碱基的可降解环氧绝缘材料性能研究

Study on Properties of Degradable Epoxy Insulation Materials Based on Schiff Base

  • 摘要: 环氧树脂因其优异的理化特性和电气性能而被广泛作用电力设备绝缘材料,但其难以有效回收降解易导致电力设备退役后整体废弃,不符合绿色电力的发展要求。为探究可降解环氧绝缘材料及其相关性能的影响因素,基于香草醛和环氧氯丙烷的醚化反应合成了含醛基的香草醛基单环氧化物,在此基础上与二胺固化剂4,4′–亚甲基双环己胺固化得到含席夫碱的可降解环氧绝缘材料。采用傅里叶变换红外光谱仪、超导核磁共振波谱仪对环氧树脂进行了分子结构表征,红外光谱、核磁共振氢谱(1H–NMR)和核磁共振碳谱(13C–NMR)均证实了合成产物为含席夫碱的可降解环氧树脂,而且可降解环氧树脂中席夫碱含量随着温度先增大后减小。热失重特性和介电性能的测试结果表明,可降解环氧树脂具有良好的热稳定性且与固化温度呈正比;其介电性能良好,相对介电常数为2.1~3.7,介电损耗为0.004~0.008,均与传统环氧树脂相当。击穿实验和力学性能的测试结果表明,可降解环氧树脂击穿场强最高可达45.34 kV/mm,弹性模量为3.4~3.7 GPa,均高于传统环氧树脂。通过探究不同的降解条件发现,材料在80 ℃的弱酸环境下,40 min内能够完全降解。

     

    Abstract: Epoxy resin is widely used as insulation material for power equipment due to its excellent physical and chemical properties as well as electrical properties. However, it is difficult to effectively recycle and degrade, which does not meet the development requirements of green power due to overall abandonment of power equipment after retirement. In order to explore the degradable epoxy insulating materials and the influencing factors of their related properties, vanillin based monoepoxides containing aldehyde groups were synthesized based on the etherification reaction of vanillin and epichlorohydrin in this paper. On this basis, the degradable epoxy insulating materials containing Schiff base were obtained by curing with diamine curing agent 4,4′−methylene bicyclohexylamine. The molecular structure of the epoxy resin was characterized by Fourier transform infrared spectroscopy and superconducting nuclear magnetic resonance spectroscopy. The infrared spectroscopy, nuclear magnetic resonance hydrogen spectroscopy (1H-NMR) and nuclear magnetic resonance carbon spectroscopy (13C-NMR) all confirmed that the synthesized product was a degradable epoxy resin containing Schiff base, and the Schiff base content in the degradable epoxy resin first increased and then decreased with temperature. The test results of thermal weightlessness and dielectric properties show that the degradable epoxy resin has good thermal stability and is proportional to the curing temperature; the dielectric property is also good, with dielectric constant of 2.1~3.7 and dielectric loss of 0.004~0.008, which are equivalent to traditional epoxy resin. The results of breakdown experiments and mechanical properties show that the breakdown field strength of degradable epoxy resin can reach up to 45.34 kV/mm and the elastic modulus is 3.4~3.7 GPa, which are higher than that of traditional epoxy resin. By exploring different degradation conditions, it was found that the material could be completely degraded within 40 minutes under the weak acid environment at 80 ℃.

     

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