欢迎登录材料期刊网

材料期刊网

高级检索

以碳化铪有机前驱体、硼化铪有机前驱体和聚碳硅烷混合溶液为浸渍剂,采用化学气相渗透( CVI)和液相浸渍-裂解(PIP)工艺制得了准3D C/C-HfC-HfB2-SiC 碳陶复合材料。采用电弧风洞结合扫描电子显微镜(SEM)和 X 射线衍射分析( XRD)对复合材料的结构及氧化失效行为进行了初步探讨。结果表明,高密度的基体改性 C/C-HfC-HfB2-SiC 复合材料具有良好的抗烧蚀性能,复合材料在2300 K/600 s 电弧风洞(含水5%)试验条件下的质量烧蚀率和线烧蚀率分别仅为1.22×10-6 g/( cm2· s)和1.33×10-5 mm/s。密度和温度对复合材料抗烧蚀性能影响较大,密度从2.63 g/cm3增加到3.75 g/cm3时,复合材料在2300 K条件下的线烧蚀率降低了3个数量级,当温度从2300 K 升高的2400 K时,高密度复合材料的线烧蚀率增加了约1000倍,烧蚀过程中较高密度的复合材料表面容易形成更为致密的氧化膜是其具有良好的抗氧性能的重要因素。

The quasi three dimension carbon/carbon-hafnium carbide-hafnium diboride-silicon carbide (3D C/C-HfC-HfB2-SiC) composites, which made use of a hybrid precursor contained polycarbosilane and organic HfB2 polymeric pre-cursor and organic HfC polymeric precursor, were prepared through chemical vapor infiltration ( CVI) and then treated by precursor infiltration and pyrolysis ( PIP) process.The components and microstructures of the ablated samples were char-acterized by scanning electron microscopy ( SEM) and X-ray diffraction ( XRD) analysis, respectively.The results show that C/C-HfC-HfB2-SiC composites with high density have wonderful anti-ablation properties.After ablation at 2 300 K (5% H2O contained) for 600 s via arc heated wind tunnel test, the mass and linear ablative rate is as low as 1.22 ×10 -6 g/( cm2 · s) and 1.33 ×10 -5 mm/s, respectively.Density and temperature were two very important factors to anti-abla-tion of the composites.The linear ablative rate of the composites decreased three orders of magnitude when density of the composites increased from 2.63 g/cm3 to 3.75 g/cm3 .And the linear recession rate rised by one thousand times from 2 300 K to 2 400 K.It is found that during ultra-high temperature stage, a high density membrane could easier got on the surface of the high density composites .It could effectively cover the ablation surface and therefore promote its anti-ablation property.

参考文献

[1] Yanhui Chu;Qiangang Fu;Hejun Li;Kezhi Li;Xu Zou;Caige Gu .Influence of SiC nanowires on the properties of SiC coating for C/C composites between room temperature and 1500 ℃[J].Corrosion Science: The Journal on Environmental Degradation of Materials and its Control,2011(9):3048-3053.
[2] A. Paul;S. Venugopal;J.G.P. Binner .UHTC-carbon fibre composites: Preparation, oxyacetylene torch testing and characterisation[J].Journal of the European Ceramic Society,2013(2):423-432.
[3] Oxidation mechanism and resistance of ZrB_2-SiC composites[J].Corrosion Science: The Journal on Environmental Degradation of Materials and its Control,2009(11):2724.
[4] Yan Liansheng;Zhang Xiaohu;Li Hejun;Cui Hong .Carbon Cloth Reinforced Polyarylacetylene Ablative Materials[J].Journal of advanced materials,2007(3):22-25.
[5] David E;Glass .Ceramic Matrix Composite (CMC) Thermal Pro-tection Systems (TPS) and Hot Structures for Hypersonic Vehi-cles[R].Ohio:University of Dayton,2008.
[6] Sun Wei;Xiong Xiang;Huang Bai-yun .ZrC ablation protective coating for carbon/carbon composites[J].Carbon: An International Journal Sponsored by the American Carbon Society,2009(14):3368-3371.
[7] Shen Xuetao;Li Kezhi;Li Hejun .Microstructure and ablation properties of zirconium carbide doped carbon/carbon composites[J].Carbon: An International Journal Sponsored by the American Carbon Society,2010(2):344-351.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%