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Crack-healing performance and oxidation behavior of SiC dispersed yttrium silicate composites

机译:SiC分散的钇硅酸盐复合材料的裂纹愈合性能和氧化行为

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摘要

Yttrium silicate-based composites dispersed with silicon carbide particles have been proposed as a novel material concept of self-healing environmental barrier coatings applied for Si-based ceramics and their composites. Crack-healing effectiveness as well as high-temperature oxidation behavior of the yttrium silicate composites was investigated as functions of oxidation time and temperatures. Dense samples of the composites dispersed with 5 vol% SiC particles were fabricated by using the pulsed electric current sintering technique. Thermal oxidation for self-healing was conducted at temperatures ranging from 1000°C to 1300°C for from 1 to 24 h in air. High-temperature oxidation experiments were carried out at temperatures ranging from 1200°C to 1400°C for from 1 to 60 h in air. As a result, the surface cracks with approximately 200 µm in length introduced on the sample surface were disappeared completely after heat treatment at 1300°C for 1 h in air. Crack-healing performance of SiC/Y2SiO5 is better than that of SiC/Y2Si2O7. The crack-healing performance of SiC/Y2SiO5-Y2Si2O7 is in the middle of that of SiC/Y2SiO5 and SiC/Y2Si2O7. The mechanism of crack healing was identified as the consequence of SiC oxidation into SiO2, which accompanies a volume expansion, and outward diffusion of Y3+ cations caused the formation of Y2Si2O7 outer layer. Oxidation of SiC particles within the matrix developed an oxidized zone. Growth of the oxidized zone obeyed the parabolic law, which meant diffusion process in the oxidized zone is the rate-controlling process.
机译:已经提出了分散用碳化硅颗粒的基于硅酸盐的复合材料作为用于Si基陶瓷及其复合材料的自愈环境阻隔涂层的新材料概念。研究了抗钙硅酸盐复合材料的裂缝愈合效果以及高温氧化行为作为氧化时间和温度的函数。通过使用脉冲电流烧结技术制造分散用5Vol%SiC颗粒的复合材料的致密样品。在空气中在1000℃至1300℃的温度下进行自愈的热氧化在1至24小时。在空气中在1200℃至1400℃的温度下进行高温氧化实验。结果,在空气中在1300℃下热处理1小时后,在样品表面上引入大约200μm的表面裂缝在样品表面上被完全消失。 SiC / Y2SIO5的裂纹愈合性能优于SiC / Y2Si2O7的抗腐蚀性。 SiC / Y2SIO5-Y2SI2O7的裂纹愈合性能是SiC / Y2SiO5和SiC / Y2Si2O7的中间。作为SiC氧化成SiO 2的结果,鉴定了裂纹愈合的机制,其伴随着Y3 +阳离子的向外扩散导致Y2SI2O7外层的形成。基质内的SiC颗粒氧化产生氧化区。氧化区的生长遵循抛物线法,其意味着氧化区中的扩散过程是速率控制过程。

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  • 作者

    Huy Dinh Vu; Makoto Nanko;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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