Thermal Insights into Curly 3D Nanofibrous Sponges for Air Filtration

徐渊强, 郑元生1, 朱蓓婕1, 杨利军1, 邢利伟1, 臧磊1, 陈赛赛1, 许嘉欣1, 张志昂1, 杨骁1, 夏圣棋1
1上海工程技术大学、上海、中国
发布日期 2025

To address the challenge of combining high filtration efficiency with thermal insulation, a 3D nanofibrous sponge with curly fibers, hierarchical porosity, and ultralow density was fabricated via electrospinning. The material exhibits excellent filtration performance, low air resistance, and mechanical stability under repeated airflow, while maintaining higher skin temperatures than conventional counterparts. COMSOL Multiphysics simulations and thermal analyses demonstrate that its porous, interlocked fiber network effectively suppresses conduction, convection, and radiation, offering a promising route toward breathable, thermally protective materials for extreme environments.

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