通过激光重熔改变冷喷 Ti-Cr3C2 复合涂层的微观结构

IF 3 Q2 MATERIALS SCIENCE, COMPOSITES Journal of Composites Science Pub Date : 2023-12-02 DOI:10.3390/jcs7120500
Vladislav S. Shikalov, Diana A. Katanaeva, T. Vidyuk, A. Golyshev, V. Kosarev, Elena E. Kornienko, Alexander G. Malikov, Victor V. Atuchin
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引用次数: 0

摘要

激光加工是改变冷喷涂涂层结构和提高涂层性能的有效后处理方法。本文研究了冷喷涂后激光重熔制备坚硬耐磨钛基金属陶瓷涂层的可能性。采用冷喷涂的方法将钛和碳化铬粉末按60/40 wt.%的比例混合,沉积在钛合金基体上,保证了复合涂层的形成,残余碳化铬含量约为12-13 wt.%。结果表明,最佳激光功率(2 kW)和扫描速度(75 mm/s)可使涂层与基体在最小孔隙率和无缺陷的情况下实现定性融合。采用扫描电镜(SEM)、能谱仪(EDS)和x射线衍射仪(XRD)分析了喷涂和重熔涂层的显微组织和相组成。结果表明,与混合料相比,喷涂后涂层的相组成没有发生变化,而重熔后涂层转变为具有均匀分布的非化学计量TiCx颗粒的β-Ti(Cr)固溶体。由于显微组织和相组成的变化,与喷涂涂层和基体相比,重熔涂层在干滑动磨损条件下具有更高的显微硬度(437 HV0.1)和更低的比磨损率(0.25 × 10−3 mm3/N × m)。激光重熔导致涂层的主要磨损机制由氧化-磨料转变为氧化-粘接并分层。
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Microstructural Modification of Cold-Sprayed Ti-Cr3C2 Composite Coating by Laser Remelting
Laser processing is an effective post-treatment method for modifying the structure and improving the properties of cold-sprayed coatings. In the present work, the possibility of fabricating a hard and wear-resistant Ti-based cermet coating by cold spray followed by laser remelting was studied. A mixture of titanium and chromium carbide powders in a ratio of 60/40 wt.% was deposited by cold spray onto a titanium alloy substrate, which ensured the formation of a composite coating with a residual chromium carbide content of about 12–13 wt.%. The optimal values of laser beam power (2 kW) and scanning speed (75 mm/s) leading to the qualitative fusion of the coating with the substrate with minimal porosity and absence of defects were revealed. The microstructure and phase composition of as-sprayed and remelted coatings were examined with SEM, EDS and XRD analysis. It was shown that the phase composition of the as-sprayed coating did not change compared to the feedstock mixture, while the remelted coating was transformed into a β-Ti(Cr) solid solution with uniformly distributed nonstoichiometric TiCx particles. Due to the change in microstructure and phase composition, the remelted coating was characterized by an attractive combination of higher microhardness (437 HV0.1) and lower specific wear rate (0.25 × 10−3 mm3/N × m) under dry sliding wear conditions compared to the as-sprayed coating and substrate. Laser remelting of the coating resulted in a change in the dominant wear mechanism from oxidative–abrasive to oxidative–adhesive with delamination.
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来源期刊
Journal of Composites Science
Journal of Composites Science MATERIALS SCIENCE, COMPOSITES-
CiteScore
5.00
自引率
9.10%
发文量
328
审稿时长
11 weeks
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