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首页> 外文期刊>ACS applied materials & interfaces >interface Structure and Corrosion Resistance of Ti/Cr Nanomultilayer Film Prepared by Magnetron Sputtering on Depleted Uranium
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interface Structure and Corrosion Resistance of Ti/Cr Nanomultilayer Film Prepared by Magnetron Sputtering on Depleted Uranium

机译:贫铀中磁控溅射制备Ti / Cr纳米多层膜的界面结构和耐蚀性

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Uranium has broadened utility in military and civilization; however, it is extremely apt to oxidation corrosion. Ti/Cr nanomultilayer film was prepared by unbalanced magnetron sputtering on the surface of depleted uranium (DU) to improve its corrosion resistance. The SEM morphologies show that Ti/Cr multilayer film has fine grain and high density. The Auger electron spectroscopy is used to investigate the depth profiles of Ti, U, and O elements of interface between DU substrate and the Ti interlayer, and indicates that the mutual diffusion area of U and Ti is formed at the interface. The TEM cross-section microstructure shows that the multilayer film has alternative Ti and Cr layers and form a perfect modulation structure. The modulation period is measured to be 4.8 nm in TEM morphology, the thickness ratio of Ti to Cr could be estimated to be about 1:2. Potentiodynamic polarization curves show that, after depositing Ti/Cr nanomultilayer film, the corrosion potential increases while the corrosion current density decreases obviously. The surface of Ti/Cr nanomultilayer film exhibits a pseudo passivation behavior when the polarization potential increased from —SO to 400 mV, It was indicated that, after depositing Ti/Cr nanomultilayer film by unbalanced magnetron sputtering, the corrosion resistance of DU was effectively improved.
机译:铀在军事和文明中已扩大了用途。但是,它极易发生氧化腐蚀。 Ti / Cr纳米多层膜是通过在贫铀(DU)表面进行不平衡磁控溅射制备的,以提高其耐腐蚀性。 SEM形貌表明Ti / Cr多层膜具有细晶粒和高密度。利用俄歇电子能谱法研究了DU衬底与Ti中间层之间界面的Ti,U和O元素的深度分布,并指出在界面处形成了U和Ti的相互扩散区​​域。 TEM截面显微结构表明,该多层膜具有交替的Ti和Cr层,并形成了理想的调制结构。在TEM形态中测得的调制周期为4.8nm,Ti与Cr的厚度比可估计为约1∶2。电位动力学极化曲线表明,沉积Ti / Cr纳米多层膜后,腐蚀电位增加,而腐蚀电流密度明显降低。当极化电位从-SO增加到400 mV时,Ti / Cr纳米多层膜的表面表现出伪钝化行为,表明通过不平衡磁控溅射沉积Ti / Cr纳米多层膜后,DU的耐蚀性得到了有效提高。 。

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