WU Jun,CAI Jianchen,WANG Sheng,LI Donghang,ZHOU Hanwen.Numerical Simulation of Thermal Behavior of Inconel 718 Coating Prepared by Pulsed Laser Cladding and Its Effect on Microstructure[J],53(11):217-227
Numerical Simulation of Thermal Behavior of Inconel 718 Coating Prepared by Pulsed Laser Cladding and Its Effect on Microstructure
Received:July 27, 2023  Revised:November 09, 2023
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DOI:10.16490/j.cnki.issn.1001-3660.2024.11.019
KeyWord:laser cladding  Inconel 718  pulsed laser  numerical simulation  microstructure and properties
              
AuthorInstitution
WU Jun Quzhou University, Zhejiang Quzhou , China;Key Laboratory of Air-Driven Equipment Technology of Zhejiang Province, Zhejiang Quzhou , China
CAI Jianchen Quzhou University, Zhejiang Quzhou , China;Key Laboratory of Air-Driven Equipment Technology of Zhejiang Province, Zhejiang Quzhou , China
WANG Sheng Quzhou College of Technology, Zhejiang Quzhou , China
LI Donghang Quzhou University, Zhejiang Quzhou , China
ZHOU Hanwen Quzhou University, Zhejiang Quzhou , China
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Abstract:
      As a new green and environment-friendly material preparation technology, laser cladding technology expands the use of Inconel 718 alloy materials, but the non-equilibrium solidification process of cladding pool is often accompanied by the segregation of elements such as Nb and Mo, finally forming Laves phase. At the same time, the high-heat laser input is easy to coarsen the dendritic structure and reduce the mechanical properties of the coating. For this reason, the work aims to investigate the evolution mechanism of solidification heat transfer behavior of Inconel 718 alloy coating under pulsed laser to explore the effects of pulsed laser on element segregation, microstructure and mechanical properties of the coating, so as to provide a theoretical basis for optimizing the quality of Inconel 718 cladding coating.
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