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Correlations between the optical emission spectra and microstructure of microplasma coatings on aluminum 2024 alloy

机译:2024铝合金表面等离子体涂层的发射光谱与显微结构的相关性。

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The microplasma synthesis of the surface layers on aluminum alloy 2024 was studied by optical emission spectroscopy in situ. The evolutions of atomic line intensities in emission spectra and the properties of obtained coatings are discussed. The evolution in the chemical composition of plasma microdischarges and coatings layer structure in the light of previously obtained data on the dynamics of phase transformation by EPR and semi-quantitative X-ray analysis were compared. In the early stages of the synthesis of the plasma consists mainly of the substrate components, but with coating thickness increasing the electrolyte components become dominant. The formation of a dense layer enriched with α-Al_2O_3 requires specific conditions, which can be found from the changes in the emission spectra of microdischarges radiation.
机译:通过光发射光谱法原位研究了铝合金2024表面层的微等离子体合成。讨论了发射光谱中原子线强度的演变以及所得涂层的性能。根据先前获得的有关EPR和半定量X射线分析相变动力学的数据,比较了等离子体微放电和涂层结构的化学成分变化。在等离子体合成的早期阶段,等离子体主要由基质成分组成,但是随着涂层厚度的增加,电解质成分成为主要成分。富含α-Al_2O_3的致密层的形成需要特定的条件,这可以从微放电辐射的发射光谱的变化中找到。

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