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Effect of Process Conditions on Microstructure and Corrosion Resistance of Cold-Sprayed Ti Coatings

机译:工艺条件对冷喷涂Ti涂层组织和耐蚀性的影响

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摘要

Ti and Ti alloys can be applied to steels as a protective coating in view of its excellent resistance to corrosive environment. Cold spraying, as a new coating technique, has potential advantages in fabrication of Ti coating in comparison with conventional thermal spraying techniques. In this study, Ti coatings were prepared on carbon steel substrates by cold spraying via controlling the process conditions. The microstructure of coatings was observed by SEM. The porosity of coatings was estimated by image analysis and the bond strength was tested for comparison of the process conditions. Potentiodynamic polarization and open-circuit potential (OCP) measurements were performed to understand the corrosion behavior of the coatings. The SEM examination shows that the coatings become more compact with the increases of pressure and temperature of driving gas. The potentiodynamic polarization curves indicate that the coating which has lower porosity has lower corrosion current. The polarization and OCP measurement reveal that cold-sprayed Ti coating can provide favorable protection to carbon steel substrate. The polishing treatment of coating surface polishes the rough outer layer including the small pores as well as decreases the actual surface area of the coating, leading to the considerable improvement of corrosion resistance.
机译:由于Ti和Ti合金具有出色的耐腐蚀性,因此可以作为保护性涂层应用于钢。与传统的热喷涂技术相比,冷喷涂作为一种新的涂层技术在制造Ti涂层方面具有潜在的优势。在这项研究中,通过控制工艺条件,通过冷喷涂在碳钢基底上制备了钛涂层。通过SEM观察涂层的微观结构。通过图像分析估计涂层的孔隙率,并测试粘合强度以比较工艺条件。进行电位动力学极化和开路电势(OCP)测量以了解涂层的腐蚀行为。 SEM检查表明,随着驱动气体压力和温度的升高,涂层变得更加致密。电位动力学极化曲线表明,具有较低孔隙率的涂层具有较低的腐蚀电流。极化和OCP测量表明,冷喷涂Ti涂层可以为碳钢基底提供良好的保护。涂层表面的抛光处理抛光了包括小孔的粗糙外层,并减少了涂层的实际表面积,从而大大提高了耐腐蚀性。

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