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Application of ion beam analysis to the characterization of protective coatings prepared by plasma detonation techniques on steel samples

机译:离子束分析在等离子爆轰技术对钢样品制备防护涂层的表征中的应用

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摘要

Ion beam analysis was used in order to characterize Al_2O_3 layers deposited on stainless steel by plasma detonation techniques and Al_2O_3/Cr/TiN composite protective coatings. The aluminum depth distribution was determined using the 991 keV resonance of the ~(27)Al(p, γ)~(28)Si reaction, whereas the ~(14)N(d, α)~(12)C reaction was utilized for the nitrogen profiling. The determination of the titanium depth distribution was performed by Rutherford backscattering spectrometry (RBS). The ratio of Al:O and Ti:N in the investigated Al_2O_3 and TiN layers was found to be close to the stoichiometric one. The effect of an additional high current electron beam (HCEB) treatment on the composition of the coatings was also investigated. Titanium and nitrogen diffusion from the surface to the interior was observed in the case of the coatings treated by HCEB.
机译:为了通过等离子爆轰技术和Al_2O_3 / Cr / TiN复合保护涂层对不锈钢上沉积的Al_2O_3层进行表征,使用了离子束分析技术。使用〜(27)Al(p,γ)〜(28)Si反应的991 keV共振确定铝的深度分布,而利用〜(14)N(d,α)〜(12)C反应用于氮气分析。钛深度分布的测定通过卢瑟福背散射光谱法(RBS)进行。发现所研究的Al_2O_3和TiN层中的Al:O和Ti:N的比例接近于化学计量比。还研究了额外的大电流电子束(HCEB)处理对涂层成分的影响。在用HCEB处理的涂层的情况下,观察到钛和氮从表面扩散到内部。

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