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Effect of B_4C on the microstructure and properties of B_4C modified three-dimensional needled C/C-SiC composites

机译:B_4C对B_4C改性三维针刺C / C-SiC复合材料组织和性能的影响

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摘要

The B_4C were introduced into three-dimensional carbon fiber preform by slurry infiltration (SI), then combined with chemical vapor infiltration (CVI) and liquid silicon infiltration (LSI) to get the B_4C modified C/C-SiC composites (C/C-B_4C-SiC). The microstructures, oxidation resistance, mechanical and thermal physical properties of the C/C-B_4C-SiC were investigated. The results indicated that B_4C distributed near the fiber surface and mainly in the region of the needle punched fibers, short-cut fiber web layer, and outside of the fiber bundle in non-woven layer. The C/C-B_4C-SiC possessed good oxidation resistance for B_4C was easy to oxidize into B_2O_3 and the product B_2O_3 could fill in the defects such as pores and cracks to prevent the oxidation. The flexural strength, fracture toughness, and thermal capacity of the C/C-B_4C-SiC were much higher than those of the C/C-SiC. The B_4C both can enhance the interface combination with fibers and act as ceramic particles reinforcement. In addition, B_4C had higher thermal capacity than C, Si or SiC to increase the thermal capacity of the C/C-B_4C-SiC.
机译:通过浆料浸渗(SI)将B_4C引入三维碳纤维预成型件中,然后与化学气相渗透(CVI)和液硅浸渗(LSI)结合得到B_4C改性的C / C-SiC复合材料(C / C- B_4C-SiC)。研究了C / C-B_4C-SiC的微观结构,抗氧化性,力学性能和热物理性能。结果表明,B_4C分布在纤维表面附近,并且主要分布在针刺纤维,短切纤维网层以及非织造层中纤维束的外部。 C / C-B_4C-SiC具有良好的抗氧化性,因为B_4C易于氧化成B_2O_3,而产物B_2O_3可以填充孔隙和裂纹等缺陷,从而防止氧化。 C / C-B_4C-SiC的抗弯强度,断裂韧性和热容远高于C / C-SiC。 B_4C既可以增强与纤维的界面结合,又可以起到陶瓷颗粒增强作用。另外,B_4C具有比C,Si或SiC更高的热容量,从而增加了C / C-B_4C-SiC的热容量。

著录项

  • 来源
    《Materials Science and Engineering》 |2017年第26期|201-210|共10页
  • 作者单位

    State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi'an, Shaanxi 710072, PR China,Science and Technology on Thermostructural Composite Materials Laboratory, Northwestern Potytechnical University, Xi'an, Shaanxi 710072, PR China;

    Science and Technology on Thermostructural Composite Materials Laboratory, Northwestern Potytechnical University, Xi'an, Shaanxi 710072, PR China;

    Science and Technology on Thermostructural Composite Materials Laboratory, Northwestern Potytechnical University, Xi'an, Shaanxi 710072, PR China;

    Science and Technology on Thermostructural Composite Materials Laboratory, Northwestern Potytechnical University, Xi'an, Shaanxi 710072, PR China;

    Science and Technology on Thermostructural Composite Materials Laboratory, Northwestern Potytechnical University, Xi'an, Shaanxi 710072, PR China;

    Science and Technology on Thermostructural Composite Materials Laboratory, Northwestern Potytechnical University, Xi'an, Shaanxi 710072, PR China;

    Science and Technology on Thermostructural Composite Materials Laboratory, Northwestern Potytechnical University, Xi'an, Shaanxi 710072, PR China;

    State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi'an, Shaanxi 710072, PR China,Science and Technology on Thermostructural Composite Materials Laboratory, Northwestern Potytechnical University, Xi'an, Shaanxi 710072, PR China,School of Materials Science and Engineering, Chang'an University, Xi'an, Shaanxi 710064, PR China;

    Science and Technology on Thermostructural Composite Materials Laboratory, Northwestern Potytechnical University, Xi'an, Shaanxi 710072, PR China;

    Science and Technology on Thermostructural Composite Materials Laboratory, Northwestern Potytechnical University, Xi'an, Shaanxi 710072, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    C/C-B_4C-SiC; Microstructure; Oxidation resistance; Mechanical properties; Thermal properties;

    机译:C / C-B_4C-SiC;微观结构抗氧化性机械性能热性能;

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