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首页> 外文期刊>Journal of Materials Research and Technology >Pitting behavior of Ti-15-3 titanium alloy with different surface in salt spray studied using electrochemical noise
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Pitting behavior of Ti-15-3 titanium alloy with different surface in salt spray studied using electrochemical noise

机译:用电化学噪声研究了Ti-15-3 Ti-15-3钛合金的钛合金与不同表面的分配行为

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摘要

Ti-15-3 titanium alloy has been widely used as a connecting material for aerospace structural parts. However, the non-uniform pitting caused by salt spray corrosion and the limitations of the conventional electrochemical techniques in predicting localized corrosion seriously prevent the practical application of Ti-15-3 alloy. Herein, the electrochemical noise based on discrete wavelet transform and Hilbert-Huang transform is employed for studying pitting corrosion of both the untreated and polished Ti-15-3 alloy under different neutral salt spray time. Combining with the further analysis of the electrochemical impedance spectroscopy, a complementary evaluation is used to analyze the effect of surface roughness on pitting corrosion behaviors of Ti-15-3 alloy systematically. It is found that pitting forms of both surface roughness electrodes exposed to different salt spray time are successfully distinguished, and the polished Ti-15-3 alloy shows better corrosion resistance. Microstructural characterization confirms the inferences from electrochemical noise analyses, the results indicate that the smooth surface of the polished Ti-15-3 alloy is less vulnerable to the coexistence of metastable pitting and the growth of stable pitting, and effectively improves the resistance to pitting corrosion of Ti-15-3 alloy. Furthermore, a possible mechanism for the triggering of pitting corrosion of Ti-15-3 alloy with different roughness in salt spray environment is proposed. This work will provide significant insights for rational design of Ti-15-3 alloy used in the tropical ocean facilities to avoid the attack of pitting corrosion.
机译:Ti-15-3钛合金已广泛用作航空结构部件的连接材料。然而,由盐雾腐蚀引起的不均匀斑点和传统电化学技术预测局部腐蚀的局限性严重地防止了Ti-15-3合金的实际应用。这里,基于离散小波变换和Hilbert-Huang变换的电化学噪声用于在不同中性盐喷雾时间下研究未处理和抛光的Ti-15-3合金的蚀腐蚀。与电化学阻抗光谱的进一步分析相结合,使用互补评估来分析表面粗糙度在系统上系统粗糙度对Ti-15-3合金的腐蚀行为的影响。发现,成功地区分了暴露于不同盐喷雾时间的表面粗糙度电极的点蚀形式,抛光的Ti-15-3合金显示出更好的耐腐蚀性。微结构表征证实了电化学噪声分析的推论,结果表明,抛光的Ti-15-3合金的光滑表面不太容易受到稳定的粘接性的共存和稳定点蚀的生长,并有效地提高了蚀腐蚀的抗性Ti-15-3合金。此外,提出了一种在盐喷雾环境中具有不同粗糙度的Ti-15-3合金触发Ti-15-3合金的触发腐蚀的可能机理。这项工作将为热带海洋设施中使用的Ti-15-3合金合理设计提供了重要的见解,以避免蚀腐蚀的攻击。

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