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Silicon oxycarbide-based composites produced from pyrolysis of polysiloxanes with active Ti filler

机译:聚硅氧烷与活性钛填料热解制备的碳氧化硅基复合材料

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摘要

Phenyl (PPS) and methyl (PMS) containing polysiloxanes were pyrolyzed at elevated temperatures (900-1500 °C) under argon atmosphere to investigate the phase developments within the polymers. It was found that pyrolysis of the polymers under inert atmosphere up to 1300 °C leads to amorphous silicon oxycarbide (SiOxCy) ceramics. Conversions at higher temperatures results in the transformations into the crystalline β-SiC phases. Ceramic matrix composites (CMCs) were developed based on the active filler controlled pyrolysis (AFCOP) of polysiloxanes with active Ti filler additions. CMC monoliths were prepared with 60-80 wt.% of active Ti particulates blended into polymer precursors. Green bodies of the composites were made by warm pressing under 15 MPa pressure and ceramics were obtained by pyrolysis at elevated temperatures between 900 and 1500 °C under argon atmosphere. The results showed that due to the incorporation of active Ti fillers, formation of crystalline phases such as TiC, TiSi, and TiO occured within the amorphous matrix due to the reactions between the Ti and the polymer decomposition products. The microstructural and mechanical characterization results of the composites are presented within the paper.
机译:在氩气气氛下(900-1500°C)在高温(900-1500°C)下热解含苯基(PPS)和甲基(PMS)的聚硅氧烷,以研究聚合物中的相发展。已发现,在惰性气氛下直至1300°C时,聚合物发生热解会生成无定形碳氧化硅(SiOxCy)陶瓷。在较高温度下的转化导致转化为结晶β-SiC相。基于添加了活性钛填料的聚硅氧烷的活性填料控制热解(AFCOP),开发了陶瓷基复合材料(CMC)。 CMC整体材料是将60-80 wt。%的活性Ti颗粒混合到聚合物前体中制备的。复合材料的生坯通过在15 MPa压力下进行热压制成,陶瓷通过在氩气中900至1500°C的高温下热解获得。结果表明,由于掺入了活性Ti填料,由于Ti与聚合物分解产物之间的反应,在无定形基体内形成了TiC,TiSi和TiO等晶相的形成。本文介绍了复合材料的微观结构和力学表征结果。

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