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Structure of SiC coatings from polycarbosilane on graphite for fuel element matrix of high temperature gas-cooled reactor

机译:高温气冷堆燃料元件基体上石墨制聚碳硅烷SiC涂层的结构

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The structures of the SiC coatings fabricated from polycarbosilane (PCS) on graphite for fuel element matrix of high temperature gas-cooled reactor were studied. It was shown that uniform dense SiC coatings could be obtained by this method when the PCS concentration of impregnation solution was in the range of 10-30 wt.%. The graded transition layers at the interface between coatings and graphite substrates were obtained for the content of SiC in pores transformed from PCS became smaller with the increase of depth due to the gradually changing impregnation resistance of PCS/xylene in the pores. The SiC coatings became denser and thicker with increase of PCS concentration. The largest thickness of SiC coatings by one impregnation was 1-2 mu m. The SiC coatings mainly contained beta-SiC, but free carbon, which was detected by Raman spectrum, still existed in the coatings. (c) 2005 Elsevier B.V. All rights reserved.
机译:研究了高温气冷堆燃料元件基体上由聚碳硅烷(PCS)在石墨上制备的SiC涂层的结构。结果表明,当浸渍溶液的PCS浓度在10-30 wt。%范围内时,可以通过这种方法获得均匀致密的SiC涂层。由于PCS /二甲苯在孔中的耐浸渍性逐渐变化,随着深度的增加,PCS转化的孔中SiC的含量变小,从而获得了涂层与石墨基底之间界面的渐变过渡层。随着PCS浓度的增加,SiC涂层变得更致密,更厚。一次浸渍的最大SiC涂层厚度为1-2微米。 SiC涂层主要包含β-SiC,但是通过拉曼光谱检测到的自由碳仍然存在于涂层中。 (c)2005 Elsevier B.V.保留所有权利。

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