聚硅氧烷陶瓷前驱体SiO2f/SiO2复合材料性能优化

IF 4.2 2区 化学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Xia Zhang, Bo Xiao, Yongzhao Hou, Guangwu Wen
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引用次数: 0

摘要

本文以聚甲基氢硅氧烷(PMHS)和乙醇为原料,通过脱水和脱醇反应合成了侧乙氧基聚硅氧烷(PESO)的陶瓷前驱体,陶瓷收率为87.15%,残碳含量极低。以石英纤维为增强剂,采用前驱体浸渍热解(PIP)法制备了具有双层界面涂层(PyC-SiO2/BNNSs)的二氧化硅基复合材料(SiO2f/SiO2)。制备的SiO2f/SiO2具有优异的力学性能,在断口形貌上表现出明显的纤维拉拔和脱粘现象。SiO2f/SiO2的抗弯强度和断裂韧性分别达到63.3 MPa和2.52 MPa·m1/2。此外,SiO2f/SiO2具有良好的介电性能,介电常数约为2.5,介电损耗小于0.01。这项工作为提高石英纤维增强陶瓷基复合材料的介电性能和力学性能,以及制备透波性复合材料提供了重要的思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Optimization of SiO2f/SiO2 Composites Derived from Polysiloxane Ceramic Precursors.

In this paper, polymethylhydrosiloxane (PMHS) and ethanol were used as raw materials to synthesize the ceramic precursor of side ethoxy polysiloxane (PESO) using dehydration and a dealcoholization reaction, which had a ceramic yield of 87.15% and a very low residual carbon content. With the quartz fiber as a reinforcer, the silica matrix composites (SiO2f/SiO2) with a double-layer interface (PyC-SiO2/BNNSs) coating were manufactured using precursor impregnation pyrolysis (PIP). The as-prepared SiO2f/SiO2 possessed an excellent mechanical property, which exhibited obvious fiber pull-out and debonding phenomena from a fracture morphology. The flexural strength and fracture toughness of SiO2f/SiO2 reached 63.3 MPa and 2.52 MPa·m1/2, respectively. Moreover, the SiO2f/SiO2 had suitable dielectric properties, with a dielectric constant of about 2.5 and a dielectric loss of less than 0.01. This work provides an important concept for the enhancement of the dielectric properties and mechanical properties of quartz fiber-reinforced ceramic matrix composites, as well as in the preparation of wave-transmissivity composites.

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来源期刊
Molecules
Molecules 化学-有机化学
CiteScore
7.40
自引率
8.70%
发文量
7524
审稿时长
1.4 months
期刊介绍: Molecules (ISSN 1420-3049, CODEN: MOLEFW) is an open access journal of synthetic organic chemistry and natural product chemistry. All articles are peer-reviewed and published continously upon acceptance. Molecules is published by MDPI, Basel, Switzerland. Our aim is to encourage chemists to publish as much as possible their experimental detail, particularly synthetic procedures and characterization information. There is no restriction on the length of the experimental section. In addition, availability of compound samples is published and considered as important information. Authors are encouraged to register or deposit their chemical samples through the non-profit international organization Molecular Diversity Preservation International (MDPI). Molecules has been launched in 1996 to preserve and exploit molecular diversity of both, chemical information and chemical substances.
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