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The effect of process conditions on the 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 the steels as a protective coating in view of its excellent resistance to corrosive environment. Cold spraying as a new surface engineering technique has potential advantages in Ti coating manufacturing in comparison with conventional thermal spraying techniques. Ti coatings were prepared on a carbon steel substrate by cold spraying via controlling the process condition variables concluding carrying gas, temperature and pressure. The microstructure of coatings was observed by SEM. Potentiodynamic polarization experiments were performed to understand the corrosion behavior of the coatings. The SEM examination showed that the coatings become more compact with increase of molecular weight, pressure and temperature of carrier gas. Potentiodynamic polarization technique was used to measure the corrosion and electrochemical property of coatings deposited under different process conditions and surface conditions. The polarization curves indicated that the coatings which had lower porosity had lower corrosion current. The polishing treatment peeled the rough outer layer including the small pores as well as decreasing of 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表面工程技术在钛涂层的制造中具有潜在的优势。通过控制工艺条件变量(包括载气,温度和压力),通过冷喷涂在碳钢基底上制备Ti涂层。通过SEM观察涂层的微观结构。进行了电位动力极化实验以了解涂层的腐蚀行为。 SEM检查表明,随着载气分子量,压力和温度的升高,涂层变得更加致密。电位动力学极化技术用于测量在不同工艺条件和表面条件下沉积的涂层的腐蚀和电化学性能。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。抛光处理使包括小孔的粗糙外层剥落,并减少了涂层的实际表面积,从而导致耐腐蚀性的显着提高。

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