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采用冷喷涂与激光熔覆相结合的方法制备的镍基梯度涂层的微观结构与性能

Microstructure and Properties of Nickel-Based Gradient Coatings Prepared Using Cold Spraying Combined with Laser Cladding Methods.

作者信息

Liu Sainan, Sun Yangyang, Zhai Pengyuan, Fan Pengyu, Zhang Yongtong, Li Muyang, Fang Jianxiao, Wu Ruilin, Cai Zhenyang

机构信息

School of Minerals Processing and Bioengineering, Central South University, Changsha 410083, China.

New Technology Promotion Institute of China Ordnance Industries, Beijing 100089, China.

出版信息

Materials (Basel). 2023 Feb 15;16(4):1627. doi: 10.3390/ma16041627.

Abstract

A cold spray-laser cladding composite gradient coating (CLGC) was successfully formed on a Cu substrate. In comparison with traditional laser cladding gradient coatings (LGC), cold spraying the pre-set Ni-Cu alloy's intermediate transition layer not only mitigates the negative impacts due to the high reflectivity of the copper substrate but also helps to minimize the difference in the coefficients of thermal expansion (CTE) between the substrate and coating. This reduces the overall crack sensitivity and improves the cladding quality of the coating. Besides this, the uniform distribution of hard phases in CLGC, such as NiSi and MoSi, greatly increases its microhardness compared to the Cu substrate, thus resulting in the value of 478.8 HV being approximately 8 times that of the Cu substrate. The friction coefficient of CLGC is lowered compared to both the Cu substrate and LGC with respective values of 0.28, 0.54, and 0.43, and its wear rate is only one-third of the Cu substrate's. These results suggest CLGC has excellent anti-wear properties. In addition, the wear mechanism was determined from the microscopic morphology and element distribution and was found to be oxidative and abrasive. This approach combines cold spraying and laser cladding to form a nickel-based gradient coating on a Cu substrate without cracks, holes, or other faults, thus improving the wear resistance of the Cu substrate and improving its usability.

摘要

在铜基体上成功制备了一种冷喷涂 - 激光熔覆复合梯度涂层(CLGC)。与传统激光熔覆梯度涂层(LGC)相比,冷喷涂预设的镍 - 铜合金中间过渡层不仅减轻了铜基体高反射率带来的负面影响,还有助于最小化基体与涂层之间的热膨胀系数(CTE)差异。这降低了整体裂纹敏感性,提高了涂层的熔覆质量。除此之外,CLGC中硬质相(如NiSi和MoSi)的均匀分布使其显微硬度相比铜基体大幅提高,因此478.8 HV的值约为铜基体的8倍。与铜基体和LGC相比,CLGC的摩擦系数降低,分别为0.28、0.54和0.43,其磨损率仅为铜基体的三分之一。这些结果表明CLGC具有优异的耐磨性能。此外,通过微观形貌和元素分布确定了磨损机制,发现其为氧化磨损和磨粒磨损。这种方法将冷喷涂和激光熔覆相结合,在铜基体上形成了无裂纹、孔洞或其他缺陷的镍基梯度涂层,从而提高了铜基体的耐磨性并改善了其使用性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d258/9962637/9c29158105e5/materials-16-01627-g001.jpg

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