Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5007307 | Optics & Laser Technology | 2018 | 6 Pages |
Abstract
An attempt, combined with the technologies of laser cladding and laser remelting, has been made to develop a Ni-Cr-Co-Ti-V high entropy alloy coating. The phase composition, microstructure, micro-hardness and wear resistance (rolling friction) were studied in detail. The results show that after laser remelting, the phase composition remains unchanged, that is, as-cladded coating and as-remelted coatings are all composed of (Ni, Co)Ti2 intermetallic compound, Ti-rich phase and BCC solid solution phase. However, after laser remelting, the volume fraction of Ti-rich phase increases significantly. Moreover, the micro-hardness is increased, up to â¼900Â HV at the laser remelting parameters: laser power of 1Â kW, laser spot diameter of 3Â mm, and laser speed of 10Â mm/s. Compared to the as-cladded high-entropy alloy coating, the as-remelted high-entropy alloy coatings have high friction coefficient and low wear mass loss, indicating that the wear resistance of as-remelted coatings is improved and suggesting practical applications, like coatings on brake pads for wear protection. The worn surface morphologies show that the worn mechanism of as-cladded and as-remelted high-entropy alloy coatings are adhesive wear.
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Authors
Zhaobing Cai, Xiufang Cui, Zhe Liu, Yang Li, Meiling Dong, Guo Jin,