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首页> 外文期刊>Journal of Materials Science >Mechanical and microstructural properties of cordierite-bonded porous SiC ceramics processed by infiltration technique using various pore formers
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Mechanical and microstructural properties of cordierite-bonded porous SiC ceramics processed by infiltration technique using various pore formers

机译:用各种孔隙成型剂渗透技术加工堇青石粘结多孔SiC陶瓷的机械和微观结构性能

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摘要

Cordierite-bonded porous SiC ceramics were prepared by air sintering of cordierite sol infiltrated porous powder compacts of SiC with graphite and polymer microbeads as pore-forming agents. The effect of sintering temperature, type of pore former and its morphology on microstructure, mechanical strength, phase composition, porosity and pore size distribution pattern of porous SiC ceramics were investigated. Depending on type and size of pore former, the average pore diameter, porosities and flexural strength of the final ceramics sintered at 1400 A degrees C varied in the range of similar to 7.6 to 10.1 A mu m, 34-49 vol% and 34-15 MPa, respectively. The strength-porosity relationship was explained by the minimum solid area (MSA) model. After mechanical stress was applied to the porous SiC ceramics, microstructures of fracture surface appeared without affecting dense struts of thickness similar to 2 to 10 A mu m showing restriction in crack propagation through interfacial zone of SiC particles. The effect of corrosion on oxide bond phases was investigated in strong acid and basic salt medium at 90 A degrees C. The residual mechanical strength, SEM micrographs and EDX analyses were conducted on the corroded samples and explained the corrosion mechanisms.
机译:通过堇青石溶胶浸润的多孔粉末块,具有石墨和聚合物微珠作为孔形成剂,制备堇青石粘结多孔SiC陶瓷。研究了烧结温度,孔隙型及其形态对微观结构,机械强度,相组成,孔隙率和多孔SiC陶瓷的孔径分布图谱的影响。根据孔前的类型和尺寸,在1400℃下烧结的最终陶瓷的平均孔径,孔隙率和弯曲强度在类似于7.6至10.1 A mu m,34-49体积%和34-的范围内变化。分别为15 MPa。最小固体面积(MSA)模型解释了强度 - 孔隙率关系。在将机械应力施加到多孔SiC陶瓷之后,裂缝表面的微观结构出现而不影响与2至10Aμm相似的厚度的密集支柱,示出了通过SiC颗粒的界面界面的裂纹传播中的限制。在90℃下在强酸和碱性盐培养基中研究腐蚀对氧化键相的影响。在腐蚀样品上进行残留的机械强度,SEM显微照片和EDX分析,并解释了腐蚀机制。

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  • 来源
    《Journal of Materials Science》 |2018年第9期|共16页
  • 作者单位

    CSIR Cent Glass &

    Ceram Res Inst 196 Raja SC Mullick Rd Kolkata 700032 India;

    CSIR Cent Glass &

    Ceram Res Inst 196 Raja SC Mullick Rd Kolkata 700032 India;

    CSIR Cent Glass &

    Ceram Res Inst 196 Raja SC Mullick Rd Kolkata 700032 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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