Arora Harpreet Singh, Perumal Gopinath, Rani Manjeet, Grewal Harpreet S
Surface Science and Tribology Lab, Department of Mechanical Engineering, Shiv Nadar University, Uttar Pradesh, Greater Noida 201314, India.
ACS Omega. 2020 Sep 16;5(38):24558-24566. doi: 10.1021/acsomega.0c03053. eCollection 2020 Sep 29.
Thermal spray coatings (TSCs) are widely utilized for limiting degradation of structural components. However, the performance of TSCs is significantly impaired by its inherent non-homogeneous microstructure, comprising of splat boundaries, porosities, secondary phase-formation, and elemental segregation. Herein, we report a simplistic approach for significantly enhancing the corrosion resistance of TSCs. Ni-Cr-5AlO coatings were deposited on stainless steel using high-velocity oxy-fuel technique. The microstructure of as-sprayed coating showed significant inhomogeneities in the form of isolated splats and elemental segregation. The microstructure of developed coatings was modified using a novel processing technique, known as stationary friction processing (SFP). The SFP treatment resulted in complete refinement of coating microstructure with elimination of splat boundaries and pores along with elemental homogenization. The corrosion behavior of as-sprayed and SFP treated coating was evaluated in 3.5% NaCl solution using potentiodynamic polarization and electrochemical impedance spectroscopy. The SFP treatment reduced the corrosion rate of as-sprayed coating by an order of magnitude. Long-time immersion studies showed continuously decreasing impedance of the as-sprayed coating due to the penetration of the electrolyte along the splat boundaries. In contrast, impedance for the SFP treated coating increased with the immersion time due to the removal of all microstructural defects.
热喷涂涂层(TSCs)被广泛用于限制结构部件的降解。然而,TSCs的性能因其固有的非均匀微观结构而显著受损,这种微观结构包括扁平颗粒边界、孔隙、二次相形成和元素偏析。在此,我们报告一种显著提高TSCs耐腐蚀性的简单方法。采用高速氧燃料技术在不锈钢上沉积Ni-Cr-5AlO涂层。喷涂态涂层的微观结构呈现出明显的不均匀性,表现为孤立的扁平颗粒和元素偏析。利用一种称为静态摩擦处理(SFP)的新型加工技术对所制备涂层的微观结构进行了改性。SFP处理使涂层微观结构完全细化,消除了扁平颗粒边界和孔隙,并实现了元素均匀化。采用动电位极化和电化学阻抗谱在3.5% NaCl溶液中评估了喷涂态和SFP处理涂层的腐蚀行为。SFP处理使喷涂态涂层的腐蚀速率降低了一个数量级。长时间浸泡研究表明,由于电解质沿扁平颗粒边界渗透,喷涂态涂层的阻抗持续下降。相比之下,由于消除了所有微观结构缺陷,SFP处理涂层的阻抗随浸泡时间增加。