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首页> 外文期刊>Journal of the European Ceramic Society >Structure design and fabrication of environmental barrier coatings for crack resistance
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Structure design and fabrication of environmental barrier coatings for crack resistance

机译:用于抗裂的环保涂料的结构设计和制造

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The elastic-modulus-graded environmental barrier coatings (EMG-EBCs) were designed and fabricated to resist crack propagation in this study. The cracks were introduced on the surface of EMG-EBCs by an indentator at room temperature to simulate the damages by foreign object impact. As a comparison, two single-layer coatings of Sc_2Si_2O_7 and barium strontium aluminosilicate (BSAS) were also fabricated and cracks were introduced on their surface with the same conditions of the EMG-EBCs. The results showed that the EMG-EBCs could resist the cracks from propagating through them due to the variation in elastic modulus along the depth beneath the surface, and thus could protect the composites from water-vapour corrosion, while the cracks could cross the single Sc_2Si_2O_7 or BSAS coating to provide channels for oxidative gas diffusing and attacking the composites inside. It is indicated that the EMG-EBCs could effectively resist the foreign object damage.
机译:在本研究中,设计并制造了弹性模量渐变的环境屏障涂料(EMG-EBCs)。在室温下用压痕机将裂纹引入到EMG-EBC的表面,以模拟异物撞击造成的破坏。作为比较,还制备了Sc_2Si_2O_7和铝硅酸锶锶钡(BSAS)的两个单层涂层,并在与EMG-EBC相同的条件下在其表面引入了裂纹。结果表明,由于弹性模量沿表面下深度的变化,EMG-EBCs可以抵抗裂纹的传播,从而可以保护复合材料免受水蒸气腐蚀,而裂纹可以穿越单个Sc_2Si_2O_7或BSAS涂层,为氧化性气体扩散和侵蚀内部复合材料提供通道。结果表明,EMG-EBCs能有效抵抗异物的破坏。

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