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Importance of the Adhesion of HVOF Sprayed Coatings for Aqueous Corrosion Resistance

机译:HVOF喷涂涂料的附着力对耐水性腐蚀的重要性

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Importance of coating adhesion in an aqueous corrosion environment was studied experimentally. Tensile adhesion strength of HVOF sprayed 316L stainless steel and Hastelloy C coatings were tested in as-sprayed condition as well as after immersion in seawater. It was found that the adhesion strength of the stainless steel coatings degraded rapidly whereas that of the Hastelloy coatings remained almost intact. Specimens with an artificial defect were also immersed in seawater. The cross sectional observation after the test revealed that the corrosion at the coating-substrate interface proceeded much faster with the stainless steel coating as compared to the Ni-base alloy coating. A model experiment to simulate the galvanic corrosion of a coating-substrate couple was carried out and no significant difference in the galvanic current density was found between the two coatings when coupled with the steel substrate. The tightness of the coating-substrate interface was then tested with a fluorescent dye penetration test. The dye could penetrate the boundary between the stainless steel coating and the substrate whereas the boundary between the Ni-base alloy coating and the substrate was so tight that no penetration occurred. The penetration behavior of the dye into the micro-gaps at the coating-substrate boundary was discussed from the viewpoint of classical Washburn-Rideal theory applied to a model of capillary flow between a pair of parallel circular disks. It was concluded that such micro-gaps between the coating and substrate must be eliminated for these barrier-type coatings to be used in corrosive environments. Heat treatment was highly effective for suppressing the preferential corrosion at the coating-substrate boundary.
机译:实验研究了在水腐蚀环境中涂层附着力的重要性。在喷涂状态下以及浸入海水后,对HVOF喷涂316L不锈钢和Hastelloy C涂层的拉伸粘合强度进行了测试。发现不锈钢涂层的粘合强度迅速降低,而哈氏合金涂层的粘合强度几乎保持不变。具有人为缺陷的标本也浸入海水中。试验后的横截面观察表明,与镍基合金涂层相比,不锈钢涂层在涂层-基体界面处的腐蚀进行得快得多。进行了模拟实验,以模拟涂层-基体对的电偶腐蚀,当与钢基体耦合时,在两个涂层之间未发现电偶电流密度的显着差异。然后用荧光染料渗透测试来测试涂层-基材界面的紧密度。染料可以穿透不锈钢涂层和基底之间的边界,而镍基合金涂层和基底之间的边界是如此紧密,以至于没有渗透发生。从经典的Washburn-Rideal理论应用于一对平行圆盘之间的毛细流动模型,讨论了染料在涂层与基材边界处的微间隙中的渗透行为。结论是,对于在腐蚀环境中使用的这些阻隔型涂层,必须消除这种涂层与基材之间的微间隙。热处理对于抑制涂层与基材边界的优先腐蚀非常有效。

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