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Forming characteristics analysis of variable-process alternated overlapping strategy based on contour description for laser melting deposition

Authors :
Ning Lv
Haitao Yue
Chenguang Guo
Jianhua Zhai
Weibing Dai
Jianzhuo Zhang
Guochao Zhao
Source :
Journal of Materials Research and Technology, Vol 27, Iss , Pp 5424-5435 (2023)
Publication Year :
2023
Publisher :
Elsevier, 2023.

Abstract

To predict the geometric characteristics and improve the forming quality and macro-micro defects of multi-track overlapping cladding layer effectively, the experimental research of laser melting deposition single-track Co-based alloy on 42CrMo substrate was carried out. The influence trends of laser process parameters on the single-track cladding height and cladding width were analyzed, and the regression prediction models were established. A variable-process alternated overlapping strategy was proposed using the geometric functions to fit the single-track profile. The surface forming quality and macro-micro defect of different overlapping cladding layers were compared and evaluated. The results showed that the cladding height and cladding width regression models established by an improved optimization algorithm had an excellent prediction effect. The variable-process alternated overlapping cladding layer prepared by the parabolic function had a flat surface, and the fluctuation distance was 81.56 μm, which was significantly improved compared with other overlapping strategies. The surface flatness of the continuous overlapping cladding layer was the worst and the spheroidization defect was the most unsatisfied. The internal defects of the constant-process alternated overlapping cladding layer were the most terrible, with more non-fusion and cracks caused by oxides. The variable-process alternated overlapping strategy proposed in this study can effectively prepare a multi-track cladding layer with a smooth surface and dense interior, which provides essential theoretical guidance for the near-net forming of component surface deposition and repair.

Details

Language :
English
ISSN :
22387854
Volume :
27
Issue :
5424-5435
Database :
Directory of Open Access Journals
Journal :
Journal of Materials Research and Technology
Publication Type :
Academic Journal
Accession number :
edsdoj.568050367bb84a098676fd430ffa58f7
Document Type :
article
Full Text :
https://doi.org/10.1016/j.jmrt.2023.11.050