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Improving Corrosion and Corrosion-Fatigue Resistance of AZ31B Cast Mg Alloy Using Combined Cold Spray and Top Coatings

机译:结合使用冷喷涂和表面涂层改进AZ31B铸造镁合金的耐腐蚀和耐疲劳性能

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In this paper, we report the application of zinc phosphate electrostatic-painting top coating on cold sprayed AA7075 leading to a significant improvement in corrosion-fatigue performance. High strength AA7075 powder was sprayed on AZ31B substrate, followed by the application of the top coating. The electrochemical corrosion and corrosion-fatigue tests of the coated and uncoated specimens were performed in 3.5% NaCl solution. Transmission electron microscopy (TEM) analysis showed that a continuous nanolayered mixture of Mg/Al was formed at the cold spray coating/substrate interface leading to high bonding strength. The results showed that the combined coatings improved the corrosion resistance remarkably, and significantly increased the fatigue life, with a fatigue strength of 80 MPa at 107 cycles, as compared to the as-cast specimen. Surface topographic analysis of the corrosion-fatigue-tested specimens demonstrated the presence of deep macro-pits on the cold sprayed AA7075 coating after 3.7 million cycles, while there were no such pits on the top-coated specimens, even after 107 cycles when tested at 30 Hz. The fractographic analysis of the fatigue-fractured specimens showed that the formation of pits allowed the NaCl solution to penetrate in the AZ31B substrate, creating localized corrosion pits resulting in premature failure, which eventually reduced the fatigue life.
机译:在本文中,我们报告了磷酸锌静电喷涂面漆在冷喷涂AA7075上的应用,从而显着改善了腐蚀疲劳性能。将高强度AA7075粉末喷涂到AZ31B基板上,然后施加顶部涂层。涂层和未涂层​​样品的电化学腐蚀和腐蚀疲劳测试均在3.5%NaCl溶液中进行。透射电子显微镜(TEM)分析表明,在冷喷涂层/基体界面处形成了连续的纳米层的Mg / Al纳米混合物,从而导致了高结合强度。结果表明,与铸态试样相比,复合涂层显着提高了耐腐蚀性,并显着延长了疲劳寿命,在107次循环下的疲劳强度为80 MPa。经腐蚀疲劳测试的样品的表面形貌分析表明,在370万次循环后,冷喷涂AA7075涂层上存在深的宏观凹坑,而在表面涂层的样品上甚至在107次循环下测试时,也没有此类凹坑。 30赫兹。疲劳断裂试样的分形分析表明,凹坑的形成使NaCl溶液渗透到AZ31B基体中,形成了局部腐蚀凹坑,导致过早失效,最终缩短了疲劳寿命。

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