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磁场辅助激光熔覆Inconel 718合金的热力学成形机制与组织性能研究

马莉冰 陈文涛 桑文雅

宇航材料工艺2024,Vol.54Issue(5):75-80,6.
宇航材料工艺2024,Vol.54Issue(5):75-80,6.DOI:10.12044/j.issn.1007-2330.2024.05.010

磁场辅助激光熔覆Inconel 718合金的热力学成形机制与组织性能研究

Thermodynamic Forming Mechanism and Microstructure Properties of Inconel 718 Alloy by Magnetic Field Assisted Laser Cladding

马莉冰 1陈文涛 1桑文雅1

作者信息

  • 1. 河南科技职业大学机电工程学院,周口 453003
  • 折叠

摘要

Abstract

This study aimed to investigated the effects of steady magnetic fields with different intensities on laser cladding of Inconel 718 superalloy.Laser cladding experiments were conducted under four different magnetic field strengths(0,100,300,500 mT),and numerical simulation combined with typical experiments was used to study the surface morphology,keyhole mode temperature field changes,microstructure,and mechanical properties of the cladding layer.The results show that when B=300 mT,the melting and evaporation latent heat barrier of the material is significantly suppressed,the morphology between the keyhole solid-liquid interface is most uniform,and the surface morphology of the cladding layer is optimal,with an average surface roughness Ra of about 4.1 μm.The microstructure is mainly composed of equiaxed grains with an average grain size of about 5.1 μm.Although the change in hardness is not significant,the average tensile strength of the cladding layer can be increased to 1.122 GPa,with an average elongation of 29.9%.The study demonstrates that a steady magnetic field of appropriate strength can significantly improve the comprehensive performance of the Inconel 718 laser cladding layer,providing theoretical basis and experimental data support for the application of magnetic-controlled laser cladding technology in related industrial fields.

关键词

激光熔覆/表面质量/数值模拟/磁场辅助/力学性能

Key words

Laser cladding/Surface quality/Numerical simulation/Magnetic field assistance/Mechanical property

分类

矿业与冶金

引用本文复制引用

马莉冰,陈文涛,桑文雅..磁场辅助激光熔覆Inconel 718合金的热力学成形机制与组织性能研究[J].宇航材料工艺,2024,54(5):75-80,6.

宇航材料工艺

OA北大核心CSTPCD

1007-2330

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