Comparative Study of Ni-, Co- and Fe-Based Laser Cladding Coatings for Wear and Corrosion Resistance

B. Larouche, Rolf Hepp, G. Reisel, P. Fiala
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Abstract

Among hardfacing processes using welding, laser cladding is nowadays one of the most efficient surface coating techniques. It is widely used to increase wear and corrosion resistance of machine parts as a result of the unique process characteristics such as low heat input (smaller heat affected zone), distortion free clad layers, lower dilution rate, finer coating microstructure as well as good metallurgical bonding at the coating/substrate interface. A wide range of new hardfacing materials and corrosion-resistant alloys are available on the market and in this study, different coatings of Ni-, Co- and Fe-based alloys as well as carbide-based metal matrix composites have been deposited by laser cladding for benchmarking purposes. Coatings were deposited onto mild steel substrates using a high-power diode laser. Coating microstructure and hardness were investigated as well as their tribological properties such as 2-body and 3-body abrasion, slurry abrasion and cavitation erosion resistance. Corrosion performance of coatings was also investigated with the salt spray test. Coatings are ranked according to their performance in the different tests and relationships between microstructure and coating properties are discussed.
镍基、钴基和铁基激光熔覆层耐磨损和耐腐蚀性能的比较研究
在焊接堆焊工艺中,激光熔覆是目前最有效的表面涂层技术之一。由于其独特的工艺特性,如低热输入(较小的热影响区)、无变形覆层、较低的稀释率、较细的涂层微观结构以及在涂层/基体界面处良好的冶金结合,它被广泛用于提高机械零件的耐磨损和耐腐蚀性能。市场上有各种各样的新型堆焊材料和耐腐蚀合金,在本研究中,采用激光熔覆的方法沉积了镍基、钴基和铁基合金以及碳化物基金属基复合材料的不同涂层,以达到对标目的。利用大功率二极管激光器将涂层沉积在低碳钢基体上。研究了涂层的显微组织和硬度,以及两体和三体耐磨性、浆液耐磨性和抗气蚀性等摩擦学性能。采用盐雾试验对涂层的腐蚀性能进行了研究。根据涂层在不同试验中的表现对其进行了排序,并讨论了涂层的微观结构与性能之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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