低热导率锆酸镧纳米纤维隔热膜

Hengchang Wang, Jie Xu, Mingyue Wei, Xuanyu Meng, Lang Lin, Xiaoying Feng, Feng Gao
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引用次数: 0

摘要

锆酸镧(LZO)具有高熔点、低导热性和高结构稳定性等高温优点,具有在高温隔热领域应用的潜力。然而,LZO多孔陶瓷的低力学性能限制了其进一步的应用。本工作通过静电纺丝制备了LZO纳米纤维膜,并研究了制备参数,包括PVP含量、纺丝电压、进料速率、接收距离和加热过程,以优化纳米纤维膜的微观结构。粒度为34.5nm的LZO纳米纤维膜在1000°C下煅烧后表现出良好的形貌。LZO纤维膜在室温下具有非常低的热导率,为0.0716W/m·K,显示出优异的绝缘性能。这项工作表明LZO纳米纤维膜是一种很有前途的隔热应用候选材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Low thermal conductivity lanthanum zirconate nanofibrous membranes for thermal insulation

Low thermal conductivity lanthanum zirconate nanofibrous membranes for thermal insulation

Lanthanum zirconate (LZO) has high-temperature advantages, including a high melting point, low thermal conductivity, and high structure stability, which has the potential to be used in high-temperature thermal insulation field. However, low mechanical properties of LZO porous ceramics have limited further applications. In this work, LZO nanofibrous membranes were prepared by electrospinning, and the preparation parameters, including PVP content, spinning voltage, feeding rate, received distance, and the heating process, were investigated to optimize the microstructure of the nanofibrous membranes. The LZO nanofibrous membranes with a grain size of 34.5 nm displayed good morphology after calcining at 1000°C. The LZO fibrous membranes had a very low thermal conductivity of 0.0716 W/m·K at room temperature, showing excellent insulating performance. This work indicates that LZO nanofibrous membranes are promising candidate materials for thermal insulation applications.

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