Physical and chemical phenomena occurring between solid ceramics and liquid metals and alloys at laser and plasma composite coatings formation: A review

IF 8.2 1区 化学 Q1 CHEMISTRY, PHYSICAL Surface Science Reports Pub Date : 2019-08-01 DOI:10.1016/j.surfrep.2019.06.001
Soufiane Oukach , Bernard Pateyron , Lech Pawłowski
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引用次数: 19

Abstract

The review describes the physical and chemical phenomena occurring between solid ceramics used as reinforcement and liquid metals and alloys used as matrix in the composite coatings. Initially, the properties of typical matrix metals as Ni, Co, Fe and alloys as Ni-based (NiCr, NiAl, NiCrAlY,…) and Co-based (Stellites) alloys in liquid state are described. Then, the phenomena related to the diffusion of some atoms such as nitrogen or carbon in liquid metals and alloys solidification are described. Subsequently, the phenomena at the interface between liquid metals and alloys and solid ceramics such as oxides or carbides during the coatings' formation are reviewed. Finally, the methods of composite coatings deposition using laser cladding and plasma transferred arc are described and the properties of the composite coatings related to their microstructure are discussed by taking into account the phenomena in melt-pool.

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固体陶瓷与液态金属和合金在激光和等离子体复合涂层形成过程中的物理和化学现象综述
综述了复合涂层中以固体陶瓷为增强材料与以液态金属和合金为基体之间的物理和化学现象。首先,介绍了Ni、Co、Fe等典型基体金属和Ni基(NiCr、NiAl、NiCrAlY等)、Co基(Stellites)等合金的液态性能。然后介绍了氮、碳等原子在液态金属和合金凝固过程中的扩散现象。接着,对涂层形成过程中液态金属、合金和固体陶瓷(如氧化物或碳化物)界面的现象进行了评述。最后,介绍了激光熔覆和等离子体转移电弧复合镀层的沉积方法,并在考虑熔池现象的情况下,讨论了复合镀层的性能与其微观结构的关系。
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来源期刊
Surface Science Reports
Surface Science Reports 化学-物理:凝聚态物理
CiteScore
15.90
自引率
2.00%
发文量
9
审稿时长
178 days
期刊介绍: Surface Science Reports is a journal that specializes in invited review papers on experimental and theoretical studies in the physics, chemistry, and pioneering applications of surfaces, interfaces, and nanostructures. The topics covered in the journal aim to contribute to a better understanding of the fundamental phenomena that occur on surfaces and interfaces, as well as the application of this knowledge to the development of materials, processes, and devices. In this journal, the term "surfaces" encompasses all interfaces between solids, liquids, polymers, biomaterials, nanostructures, soft matter, gases, and vacuum. Additionally, the journal includes reviews of experimental techniques and methods used to characterize surfaces and surface processes, such as those based on the interactions of photons, electrons, and ions with surfaces.
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