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About structural phase state of coating based on zirconium oxide formed by microplasma oxidation method

机译:关于基于通过显微氧化方法形成的氧化锆的涂层结构相位状态

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The oxide-ceramic coating based of zirconium oxide is formed by the method of microplasma oxidation. The producing modes of the oxide layers on E110 zirconium alloy are under testing. It was found that using microplasma treatment of E110 zirconium in aluminosilicate electrolyte makes possible the formation of porous oxide-ceramic coatings based on zirconium alloyed by aluminum and niobium. The study is focused on the modes how to form heat-shielding coatings with controlled porosity and minimal amount of microcracks. The structural-phase state of the coating is studied by X-ray diffraction analysis and scanning electron microscopy (SEM). It was found that the ratio of the monoclinic and tetragonal phases changes with the change occurring in the coating formation modes.
机译:基于氧化锆的氧化物陶瓷涂层通过显微氧化方法形成。 E110锆合金上的氧化物层的产生模式在测试中。发现,使用硅铝酸盐电解质中的E110锆的显微丙酸酯可以形成基于由铝和铌合金合金合金的氧化锆的多孔氧化物陶瓷涂层。该研究专注于如何形成具有受控孔隙率和最小量的微裂纹形成隔热涂层的模式。通过X射线衍射分析和扫描电子显微镜(SEM)研究涂层的结构相位状态。发现单斜斜肌和四方相的比例随涂层形成模式中发生的变化而变化。

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