首页> 外文期刊>Journal of Thermal Spray Technology >In situ Formed alpha-Al2O3 Nanocrystals Repaired the Preexisting Microcracks in Plasma-Sprayed Al2O3 Coating via Stress-Induced Phase Transformation
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In situ Formed alpha-Al2O3 Nanocrystals Repaired the Preexisting Microcracks in Plasma-Sprayed Al2O3 Coating via Stress-Induced Phase Transformation

机译:原位形成的α-Al2O3纳米晶体通过应力诱导相变修复了等离子喷涂Al2O3涂层中的微裂纹。

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摘要

In the present study, the phase composition and generation mechanism of the nanocrystals located in the microcracks of plasma-sprayed Al2O3 coating were reevaluated. The Al2O3 coatings were investigated using transmission electron microscopy and x-ray diffraction. We supply the detailed explanations to support the new viewpoint that in situ formation of alpha-Al2O3 nanocrystals in the preexisting microcracks of the as-sprayed Al2O3 coating may be due to the stress-induced phase transformation. Owing to the partially coherent relationship, the phase interfaces between the alpha-Al2O3 nanocrystals with the preferred orientation and the c-Al2O3 matrix may possess better bonding strength. The alpha-Al2O3 nanocrystals could repair the microcracks in the coating, which further strengthens grain boundaries. Grain boundary strengthening is beneficial to the coating fracture toughness enhancement.
机译:在本研究中,重新评估了位于等离子喷涂Al2O3涂层微裂纹中的纳米晶体的相组成和生成机理。使用透射电子显微镜和X射线衍射研究了Al2O3涂层。我们提供详细的解释以支持新观点,即在喷涂的Al2O3涂层的预先存在的微裂纹中原位形成α-Al2O3纳米晶体可能是由于应力诱导的相变。由于部分相干关系,具有优选取向的α-Al2 O 3纳米晶体与c-Al 2 O 3基体之间的相界面可以具有更好的结合强度。 α-Al2O3纳米晶体可以修复涂层中的微裂纹,从而进一步增强了晶界。晶界强化有利于涂层断裂韧性的提高。

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