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Microstructures of a SiC–ZrC Ceramic Fiber Derived from a Polymeric Precursor

机译:源自聚合物前体的SiC–ZrC陶瓷纤维的微观结构

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摘要

Continuous ceramic fiber comprising silicon carbide–zirconium carbide (SiC–ZrC) binary phases was obtained through melt spinning, electron-beam curing and pyrolysis of a pre-ceramic precursor of polyzirconocenecarbosilanes (PZCS). After pyrolysis and heat treatment, ZrC particles with mean diameters of 15–20 nm were formed and homogeneously dispersed in a matrix of fine crystalline β-SiC with an average grain size of 6–10 nm. Concentration of Zr in the fiber varies from 14.88% to 17.45% by mass. Fibers consisting of near-stoichiometric ZrC and SiC with little free carbon can be obtained through pyrolysis decarbonization of the as-cured fiber in hydrogen from room temperature to 1000 °C, and subsequently heat treatment in argon up to 1600 °C for 1 h. High-temperature treatment of these amorphous inorganic fibers leads to crystallization of the binary phases of β-SiC and ZrC. The removal of free carbon under hydrogen results in more rapid growth of β-SiC and ZrC crystals, in which obvious aggregation of the dispersed ZrC particles among the continuous β-SiC matrix can be ascribed to a fast migration of Zr cation.
机译:通过对聚锆茂碳硅烷(PZCS)的预陶瓷前驱体进行熔融纺丝,电子束固化和热解,可获得包含碳化硅-碳化锆(SiC-ZrC)二元相的连续陶瓷纤维。经过热解和热处理后,形成了平均直径为15–20 nm的ZrC颗粒,并将其均匀分散在平均晶粒尺寸为6–10 nm的细晶β-SiC基质中。纤维中Zr的浓度为14.88%〜17.45%。通过将固化后的纤维在室温下从氢气中高温解热至1000°C,然后在高达1600°C的氩气中热处理1 h,可以得到由几乎化学计量的ZrC和SiC组成的纤维,其游离碳很少。这些非晶态无机纤维的高温处理导致β-SiC和ZrC的二元相结晶。氢下游离碳的去除导致β-SiC和ZrC晶体更快地生长,其中连续的β-SiC基质中分散的ZrC颗粒的明显聚集可归因于Zr阳离子的快速迁移。

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