首页> 外文会议>International Conference on Surface Engineering; 20041029-31; Shenzhen(CN) >Microstructure evolution of cold-sprayed coating during deposition and through post-spraying heat treatment
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Microstructure evolution of cold-sprayed coating during deposition and through post-spraying heat treatment

机译:沉积过程中以及喷涂后热处理后冷喷涂涂层的微观结构演变

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摘要

The microstructural features of cold-sprayed coatings were investigated using Cu, Ti and Zn feedstocks by optical microscopy, scanning electron microscopy and transmission electron microscopy to reveal the microstruc-ture evolution mechanisms in cold spray. Four typical effects including tamping, refinement, impact-induced fusion and annealing were examined on microstructure. It is found that the microstructure of cold spray coating is remarkably influenced by spray materials. Ti coatings consist of evident porous layer and Cu coatings present a limited porous layer only near the surface. It is clear that the successive tamping effect and dynamic refinement of grains significantly influence the microstructure evolution of cold-sprayed coating. The tamping effect leads to the densification of porous coating layer gradually and the refinement effect leads to the formation of fine microstructure. It is considered that the large difference in the formation of porous layer is attributed to the dynamic impact pressure and hardenabil-ity of materials. It is also found that the impact-induced fusion during deposition of Zn coating can also modify the interfacial microstructure between particles in cold spray coating. Moreover, the nanocrystalline phase can be formed at the interfaces among particles resulting from the localized melting of the interfaces and tamping effect. Furthermore, the annealing treatment can modify the microstructure and property of a cold-sprayed coating.
机译:利用光学显微镜,扫描电子显微镜和透射电子显微镜研究了使用铜,钛和锌原料的冷喷涂涂层的微观结构特征,揭示了冷喷涂过程中的微观结构演变机理。在微观结构上检查了四个典型的影响,包括夯实,细化,冲击诱导的融合和退火。发现冷喷涂的微观结构受喷涂材料的影响很大。 Ti涂层由明显的多孔层组成,而Cu涂层仅在表面附近存在有限的多孔层。显然,连续的夯实作用和晶粒的动态细化显着影响了冷喷涂涂层的微观结构演变。夯实作用导致多孔涂层逐渐致密化,细化作用导致形成精细的微结构。可以认为,多孔层形成的较大差异是由于动态冲击压力和材料的可硬化性。还发现在锌涂层的沉积过程中冲击诱导的熔合还可以改变冷喷涂涂层中颗粒之间的界面微观结构。而且,由于界面的局部熔化和夯实作用,可以在颗粒之间的界面处形成纳米晶相。此外,退火处理可以改变冷喷涂涂层的微观结构和性能。

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