无基材、可拉伸、高柔韧电热膜的制备和性能研究

Preparation and performance of base-free, stretchable and highly flexible electric heating films

  • 摘要: 通过将导电填料添加到聚氨酯基体中,本研究制备了一种新型的无基材、可拉伸、且具有高柔韧性的电热膜,并对其结构特性、热稳定性、力学性能及老化性能等方面进行了研究。结果表明,多孔结构的基体和均匀分布的导电填料构建了稳定的导电网络,所得电热膜的导电性和力学性能得到了显著提升,且表现出良好的热稳定性。导电填料含量在10wt%时,电热膜实现了导电性能与力学性能的平衡,并表现出优异的热响应特性;而电热老化和紫外老化均会导致电热膜性能的退化。本研究所设计的具有优异的可拉伸性和柔韧性的电热膜,为电热产品的开发提供了全新的思路。

     

    Abstract: By incorporating conductive fillers into the polyurethane matrix, a novel substrate-free, stretchable, and highly flexible electric heating film was developed. Its structural characteristics, thermal stability, mechanical properties, and aging performance were investigated. The results showed that the porous structure of the matrix and the uniformly distributed conductive fillers formed a stable conductive network, significantly enhancing the conductivity and mechanical performance, while also exhibiting good thermal stability. When the conductive filler content was 10 wt%, the electric heating film achieved a balance between conductivity and mechanical properties, demonstrating excellent thermal response characteristics. Both electrical degradation and UV aging led to performance degradation of the electric heating film. The innovative design in this study of a highly stretchable and flexible electric heating film provides a new approach for the development of electric heating products.

     

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