Sathish M, Radhika N, Saleh Bassiouny
Department of Mechanical Engineering, Amrita School of Engineering, Amrita Vishwa Vidyapeetham, Coimbatore, India.
College of Energy and Power Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, 210016, China.
Sci Rep. 2024 Sep 27;14(1):22272. doi: 10.1038/s41598-024-72208-2.
Surfaces are commonly enhanced with wear-resistant coatings to improve their resistance to abrasion, erosion, and other forms of wear. These coatings play a crucial role in extending the lifespan and improving the performance of materials and components exposed to challenging conditions. The objective of the current study is to deposit thermally sprayed 3-layer TiC-12Co-10ZrO/NiCoCrAlMo functionally graded coatings on SS410 substrates using atmospheric plasma spray. The results revealed that by employing appropriate ceramic proportions, the microhardness of graded coatings increased to 990.4 HV, which is approximately 3.21 times higher than that of the substrate. Furthermore, the tribological properties of graded coating exhibited superior resistance compared to the substrate, where process settings were varied. Specifically, graded coating samples subjected to the applied load, sliding distance, and sliding velocity showed improved wear resistance of 78.51%, 68.42%, and 76.66% respectively in extreme conditions compared with uncoated samples. The characterization of the worn surface revealed a sequential occurrence of wear mechanisms: abrasive, adhesive, and delamination. The formation of TiO and CrO tribo-oxide film protects the surface against the wear mechanism and is applicable in extreme wear environments.
表面通常会用耐磨涂层进行强化,以提高其耐磨性、抗侵蚀性和其他形式的磨损抵抗能力。这些涂层在延长暴露于恶劣条件下的材料和部件的使用寿命以及提高其性能方面起着至关重要的作用。本研究的目的是使用大气等离子喷涂在SS410基体上沉积热喷涂三层TiC-12Co-10ZrO/NiCoCrAlMo功能梯度涂层。结果表明,通过采用适当的陶瓷比例,梯度涂层的显微硬度提高到990.4 HV,约为基体显微硬度的3.21倍。此外,与基体相比,在不同工艺参数下,梯度涂层的摩擦学性能表现出更好的耐磨性。具体而言,在极端条件下,承受加载载荷、滑动距离和滑动速度的梯度涂层样品与未涂层样品相比,耐磨性分别提高了78.51%、68.42%和76.66%。磨损表面的表征揭示了磨损机制的依次发生:磨料磨损、粘着磨损和分层磨损。TiO和CrO摩擦氧化膜的形成保护表面免受磨损机制的影响,适用于极端磨损环境。