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新合成的纤维增强超柔性二氧化硅气凝胶的温度依赖性硬化和非弹性行为

Temperature-Dependent Stiffening and Inelastic Behavior of Newly Synthesized Fiber-Reinforced Super Flexible Silica Aerogels.

作者信息

Rege Ameya, Voepel Pascal, Okumus Emrah, Hillgärtner Markus, Itskov Mikhail, Milow Barbara

机构信息

Institute of Materials Research, German Aerospace Center, Linder Höhe, 51147 Cologne, Germany.

Department of Continuum Mechanics, RWTH Aachen University, Kackertstr. 9, 52072 Aachen, Germany.

出版信息

Materials (Basel). 2019 Sep 6;12(18):2878. doi: 10.3390/ma12182878.

Abstract

In recent years, flexible silica aerogels have gained significant attention, owing to their excellent thermal and acoustic insulation properties accompanied by mechanical flexibility. Fiber reinforcement of such aerogels results in a further enhancement of the strength and durability of the composite, while retaining the excellent insulation properties. In this paper, the influence of four different kinds of fibers within a flexible silica aerogel matrix is studied and reported. First, a description of the synthesis procedure and the resulting morphology of the four aerogel composites is presented. Their mechanical behavior under uniaxial quasi-static tension and compression is investigated, particularly their performance under uniaxial compression at different temperature conditions (50 °C, 0 °C, and -50 °C). The reinforcement of the flexible silica aerogels with four different fiber types only marginally influences the thermal conductivity but strongly enhances their mechanical properties.

摘要

近年来,柔性二氧化硅气凝胶因其优异的隔热和隔音性能以及机械柔韧性而备受关注。这种气凝胶的纤维增强进一步提高了复合材料的强度和耐久性,同时保留了优异的隔热性能。本文研究并报道了四种不同纤维在柔性二氧化硅气凝胶基体中的影响。首先,介绍了四种气凝胶复合材料的合成过程及其所得形态。研究了它们在单轴准静态拉伸和压缩下的力学行为,特别是在不同温度条件(50°C、0°C和-50°C)下单轴压缩下的性能。用四种不同纤维类型对柔性二氧化硅气凝胶进行增强,仅对热导率有轻微影响,但能显著提高其力学性能。

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