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Manufacturing and the process-structure-property correlation of detonation sprayed iron coatings under an unconventional coating deposition mechanism

The detonation spraying was used to manufacture pure iron coatings under a coating deposition mechanism between that of general thermal spray and cold spray. The feedstock powders were heated to the temperatures below melting point and accelerated to the velocities comparable to that of in cold spra...

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Bibliographic Details
Published in:Surface & coatings technology 2023-08, Vol.466, p.129634, Article 129634
Main Authors: Wang, Xingli, Zhou, Deli, Guo, Zongxiao, Wang, Fan, Qiu, Yunming, Huang, Jianjun
Format: Article
Language:English
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Summary:The detonation spraying was used to manufacture pure iron coatings under a coating deposition mechanism between that of general thermal spray and cold spray. The feedstock powders were heated to the temperatures below melting point and accelerated to the velocities comparable to that of in cold spraying. The results showed the iron coatings had very dense structure, good adhesion quality on the steel substrates, the same phase with the feedstock powders and very low oxygen and carbon-based impurities contents. The EBSD images, specific heat, thermal conductivity, micro-hardness and elastic modulus of the coatings have been detected to understand the structure and properties of the coatings. Explicit dynamic simulations with finite element method have been carried out for the studies on the coating deposition process and mechanism. Based on the above experiment and simulation results, a comprehensive emphasis on this unconventional coating deposition mechanism and the process-structure-property correlation of the iron coatings have been put forward. •Iron coatings were detonation sprayed under a cold mode with an unconventional coating deposition mechanism.•The good quality of the iron coatings proved the advantages and potentially wide application of this spraying mode.•The process-structure-property correlation of this spraying mode has been discussed and summarized in detail.
ISSN:0257-8972
DOI:10.1016/j.surfcoat.2023.129634