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新型镍 - 磷 - 特瑞巴洛伊复合防护涂层

Novel Ni-P-Tribaloy Composite Protective Coating.

作者信息

Mabrouk Ahmed, Farhat Zoheir

机构信息

Department of Mechanical Engineering, Dalhousie University, 1360 Barrington Street, Halifax, NS B3J 2X4, Canada.

出版信息

Materials (Basel). 2023 May 25;16(11):3949. doi: 10.3390/ma16113949.

Abstract

Oil and gas pipelines are subject to various forms of damage and degradation during their operation. Electroless Nickel (Ni-P) coatings are widely employed as protective coatings due to their ease of application and unique properties, including high wear and corrosion resistance. However, they are not ideal for protecting pipelines due to their brittleness and low toughness. Composite coatings of higher toughness can be developed through the co-deposition of second-phase particles into the Ni-P matrix. Tribaloy (CoMoCrSi) alloy possesses excellent mechanical and tribological properties making it a potential candidate for a high-toughness composite coating. In this study, Ni-P-Tribaloy composite coating consisting of 15.7 vol.% Tribaloy was successfully deposited on low-carbon steel substrates. Both the monolithic and the composite coatings were studied to evaluate the effect of the addition of Tribaloy particles. The micro-hardness of the composite coating was measured to be 6.00 GPa, 12% greater than that of the monolithic coating. Hertzian-type indentation testing was carried out to investigate the coating's fracture toughness and toughening mechanisms. The 15.7 vol.% Tribaloy coating exhibited remarkably less severe cracking and higher toughness. The following toughening mechanisms were observed: micro-cracking, crack bridging, crack arrest, and crack deflection. The addition of the Tribaloy particles was also estimated to quadruple the fracture toughness. Scratch testing was performed to evaluate the sliding wear resistance under a constant load and a varying number of passes. The Ni-P-Tribaloy coating exhibited more ductile behavior and higher toughness, as the dominant wear mechanism was identified as material removal, as opposed to brittle fracture in the Ni-P coating.

摘要

油气管道在运行过程中会受到各种形式的损坏和退化。化学镀镍(Ni-P)涂层因其易于应用和独特性能(包括高耐磨性和耐腐蚀性)而被广泛用作防护涂层。然而,由于其脆性和低韧性,它们并非保护管道的理想选择。通过将第二相颗粒共沉积到Ni-P基体中,可以开发出具有更高韧性的复合涂层。Tribaloy(CoMoCrSi)合金具有优异的机械和摩擦学性能,使其成为高韧性复合涂层的潜在候选材料。在本研究中,由15.7体积%的Tribaloy组成的Ni-P-Tribaloy复合涂层成功沉积在低碳钢基体上。对整体涂层和复合涂层都进行了研究,以评估添加Tribaloy颗粒的效果。复合涂层的显微硬度测得为6.00 GPa,比整体涂层高12%。进行了赫兹型压痕测试,以研究涂层的断裂韧性和增韧机制。含15.7体积% Tribaloy的涂层显示出明显较轻的开裂和更高的韧性。观察到以下增韧机制:微裂纹、裂纹桥接、裂纹止裂和裂纹偏转。据估计,添加Tribaloy颗粒还使断裂韧性提高了四倍。进行了划痕测试,以评估在恒定载荷和不同通过次数下的滑动耐磨性。Ni-P-Tribaloy涂层表现出更具韧性的行为和更高的韧性,因为主要磨损机制被确定为材料去除,而不是Ni-P涂层中的脆性断裂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbbf/10253926/1142a8f9a8fb/materials-16-03949-g001.jpg

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