首页> 外文期刊>Journal of surface investigation: x-ray, synchrotron and neutron techniques >Study of the Composition and Properties of Protective Layers Formed by the Ion-Beam-Assisted Deposition of Cadmium, Zinc, and Aluminum onto Steel Surfaces
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Study of the Composition and Properties of Protective Layers Formed by the Ion-Beam-Assisted Deposition of Cadmium, Zinc, and Aluminum onto Steel Surfaces

机译:离子束辅助在钢表面沉积镉,锌和铝形成的保护层的组成和性能的研究

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摘要

Layers formed by the ion-beam-assisted deposition of cadmium, zinc, and aluminum onto the surface of carbon and stainless steels to protect aluminum and its alloys from corrosion in the case of their contact with steel parts are investigated. The protective layers are created via ion-beam-assisted deposition, in which metal deposition and mixing of the deposited layer with the substrate surface (this process is implemented by accelerated (U = 5 kV) ions of the same metal) occurs, respectively, from a neutral vapor fraction and the vacuum arc plasma of a pulsed electric-arc ion source. The morphology and composition of the generated surface layers are studied by means of scanning electron microscopy, electron-probe microanalysis, and Rutherford backscattering spectrometry. The layer composition is revealed to include atoms of the deposited metal, the substrate material, oxygen, and carbon. The layer thickness varies from ~50 to 80 nm, and the deposited metal content of the layers is ~(1.0-3.5) × 10~(17) atom/cm~2. Corrosion tests of the aluminum and its alloy in contact with the materials under study confirm the efficiency of the ion-beam modification of steel surfaces.
机译:研究了通过离子束辅助将镉,锌和铝沉积到碳和不锈钢表面上形成的层,以保护铝及其合金在与钢部件接触时免受腐蚀。通过离子束辅助沉积形成保护层,其中分别进行金属沉积和沉积层与基板表面的混合(此过程由相同金属的加速(U = 5 kV)离子实施),由中性蒸气馏分和脉冲电弧离子源的真空电弧等离子体产生。通过扫描电子显微镜,电子探针显微分析和卢瑟福背散射光谱法研究产生的表面层的形态和组成。揭示出该层组成包括沉积的金属,基底材料,氧和碳的原子。层厚度在约50至80 nm之间变化,并且各层的沉积金属含量为〜(1.0-3.5)×10〜(17)原子/ cm〜2。与研究中的材料接触的铝及其合金的腐蚀测试证实了钢表面离子束改性的效率。

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