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首页> 外文期刊>CERAMICS INTERNATIONAL >Ablation behavior of C/C-ZrC-SiC composites prepared by reactive melt infiltration under oxyacetylene torch at two heat fluxes
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Ablation behavior of C/C-ZrC-SiC composites prepared by reactive melt infiltration under oxyacetylene torch at two heat fluxes

机译:氧乙烯炬在两个热通量下反应熔体浸润在氧乙炔炬下制备的C / C-ZRC-SiC复合材料的消融行为

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摘要

C/C-ZrC-SiC composites were prepared by reactive melt infiltration and tested using an oxyacetylene torch with the heat fluxes of 4.18 and 2.38 MW/m(2). The results showed that compared to C/C and C/C-SiC at the heat flux of 4.18 MW/m(2), the mass ablation rates of C/C-ZrC-SiC were decreased by 60.8% and 44.8%, respectively. Its linear ablation rate was 7.3% higher than that of C/C, but was 13.5% lower than that of C/C-SiC. The C-SiC matrix and fibers of C/C-SiC in the center region were severely depleted by the high ablation temperature. C/C-ZrC-SiC composites experienced the temperature exceeding 2400 degrees C associated with intense mechanical scouring of gas flow. The severe depletion of SiC and carbon fibers on the surface led to the formation of the porous ZrO2 layer. The spallation of ZrO2 occurred in the center of the ablated surface as a result of mechanical denudation of high temperature gas flow. At the heat flux of 2.38 MW/m(2), the mass and linear ablation rates of C/C-ZrC-SiC were decreased by 76.8% and 88.4% (C/C), 66.9% and 58.3% (C/C-SiC), respectively. The oxide was slightly peeled off in the center region of C/C-SiC. The surface temperatures of C/C-SiC and C/C-ZrC-SiC were lower than that of C/C composites. The island-like ZrO2 and SiO2 layer were formed on the ablated surface of C/C-ZrC-SiC and acted as effective barriers to shield the ablation heat and slow inward transport of oxygen to the underlying material.
机译:通过反应性熔体渗透制备C / C-ZrC-SiC复合材料,并使用羟乙乙烷焊炬测试,其中热助熔剂为4.18和2.38mW / m(2)。结果表明,与4.18mW / m(2)的热通量的C / C和C / C-SiC相比,C / C-ZRC-SiC的质量消融率分别降低了60.8%和44.8% 。其线性消融率高于C / C的线性消融率为7.3%,但比C / C-SIC的含量低13.5%。中心区域C / C-SiC的C-SiC基质和纤维通过高消融温度严重耗尽。 C / C-ZRC-SiC复合材料经历了超过2400℃的温度,与气流强烈的机械擦洗相关。表面上的SiC和碳纤维的严重耗竭导致多孔ZrO2层的形成。由于高温气流的机械剥落,ZrO2的偏移发生在消融表面的中心。在2.38mW / m(2)的热通量下,C / C-Zrc-SiC的质量和线性消融率降低76.8%和88.4%(C / C),66.9%和58.3%(C / C. -SIC)分别。在C / C-SiC的中心区域略微剥离氧化物。 C / C-SiC和C / C-ZrC-SiC的表面温度低于C / C复合材料的表面温度。在C / C-Zrc-SiC的消融表面上形成岛状ZrO2和SiO 2层,并用作保护烧蚀热量并使氧气向下面的材料释放的有效屏障。

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  • 来源
    《CERAMICS INTERNATIONAL》 |2018年第14期|共14页
  • 作者单位

    Northwestern Polytech Univ Carbon Carbon Composites Res Ctr State Key Lab Solidificat Proc Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ Carbon Carbon Composites Res Ctr State Key Lab Solidificat Proc Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ Carbon Carbon Composites Res Ctr State Key Lab Solidificat Proc Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ Carbon Carbon Composites Res Ctr State Key Lab Solidificat Proc Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ Carbon Carbon Composites Res Ctr State Key Lab Solidificat Proc Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ Carbon Carbon Composites Res Ctr State Key Lab Solidificat Proc Xian 710072 Shaanxi Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 陶瓷工业;硅酸盐工业;
  • 关键词

    Carbon/carbon composites; Reactive melt infiltration; Ablation; Microstructure;

    机译:碳/碳复合材料;活性熔体渗透;消融;微观结构;

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