耐高温、低介电常数含硅芳基乙炔树脂/二氧化硅合成泡沫的制备及其特性

IF 3.4 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Advanced Engineering Materials Pub Date : 2024-10-25 DOI:10.1002/adem.202401638
Xuetao Shen, Chaoen Jin, Fan Wang, Yaping Zhu, Shifeng Deng, Huimin Qi
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引用次数: 0

摘要

通过化学发泡法制备了含硅芳基乙炔树脂(PSA)/二氧化硅合成泡沫,以PSA为基体,石英砂(QS)和纳米二氧化硅(nSiO2)为填料,并对其结构和性能进行了表征。结果表明,加入适量的 QS 和 nSiO2 可以减小合成泡沫的泡孔尺寸和表观密度,改善其耐热性、介电性能和透波性能。加入 QS 可以提高合成泡沫的抗压强度,而加入 nSiO2 则会降低抗压强度。添加 9% 填料的 PSA/9QS 和 PSA/9nSiO2 合成泡沫的表观密度分别为 0.242 g cm-3 和 0.157 g cm-3,氮气环境下失重 5% 时的温度(Td5)分别为 692 ℃ 和 658 ℃。介电常数分别为 1.59 和 1.25。在 8.2-12.4 GHz 频率范围内的透波率分别为 98.5% 和 96.8%。PSA/SiO2 合成泡沫可作为一种轻质、耐高温的透波材料应用于航空航天和其他领域。
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Preparation and Properties of High-Temperature-Resistant and Low-Dielectric Constant Silicon-Containing Arylacetylene Resin/SiO2 Syntactic Foams

A silicon-containing arylacetylene resin (PSA)/SiO2 syntactic foam was prepared through a chemical foaming approach, with PSA serving as the matrix, quartz sand (QS) and nanosilica (nSiO2) acting as fillers, and their structures and properties were characterized. The results show that the incorporation of appropriate amounts of QS and nSiO2 can reduce the cell size and apparent density of the syntactic foam, and improve its heat resistance, dielectric properties and wave transmission properties. The addition of QS can increase the compressive strength of the syntactic foam, while the addition of nSiO2 decreases the compressive strength. The apparent densities of the PSA/9QS and PSA/9nSiO2 syntactic foams with 9% filler addition are 0.242 g cm−3 and 0.157 g cm−3, respectively, and the temperatures at 5% weight loss (Td5) under a nitrogen atmosphere were 692 °C and 658 °C, respectively. The dielectric constants were 1.59 and 1.25, respectively. The wave transmittance within the frequency range of 8.2–12.4 GHz was 98.5% and 96.8%, respectively. PSA/SiO2 syntactic foam can be used as a lightweight and high-temperature-resistant wave-transmission material in aerospace and other fields.

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来源期刊
Advanced Engineering Materials
Advanced Engineering Materials 工程技术-材料科学:综合
CiteScore
5.70
自引率
5.60%
发文量
544
审稿时长
1.7 months
期刊介绍: Advanced Engineering Materials is the membership journal of three leading European Materials Societies - German Materials Society/DGM, - French Materials Society/SF2M, - Swiss Materials Federation/SVMT.
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