Effect of laser intensity profile on the microstructure and texture of Inconel 718 superalloy fabricated by direct energy deposition

被引:25
|
作者
Cheng, Manping [1 ]
Xiao, Xianfeng [2 ]
Luo, Guoyun [1 ]
Li, Simeng [1 ]
Song, Lijun [1 ]
机构
[1] Hunan Univ, State Key Lab Adv Design & Mfg Vehicle Body, Hunan Prov Key Lab Intelligent Laser Mfg, Changsha 410082, Hunan, Peoples R China
[2] Nanchang Univ, Sch Mechatron Engn, Nanchang 330031, Jiangxi, Peoples R China
基金
中国国家自然科学基金;
关键词
Direct energy deposition; Inconel; 718; Laser intensity profile; Crystallographic texture; LAVES PHASE-CONTROL; POWDER BED FUSION; HEAT-TREATMENT; MECHANICAL-PROPERTIES; CRYSTALLOGRAPHIC TEXTURE; STAINLESS-STEEL; GRAIN-GROWTH; BEHAVIOR; EVOLUTION;
D O I
10.1016/j.jmrt.2022.03.035
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Epitaxial growth of dendrites often results in a strong texture, which is a common phenomenon in a laser additive manufacturing process. In this study, pulsed lasers with flattop and Gaussian intensity profiles were used to modulate the molten pool morphology and the solidification texture with a unidirectional scanning strategy. The melt pool is planar for the flat-top mode and it turns arc-shaped for the Gaussian mode. Long columnar grains are uniformly distributed and a strong fiber texture with a weak cube texture is obtained for the flat-top mode sample due to a uniform heat flux through many deposition layers. In contrast, large grains and fine grains are alternately arranged for Gaussian mode sample. The large grains exhibit a strong rotated cubic texture with a V-pattern in the overlapping area of the melt pool due to side-branching from the curved melt pool boundary; while the fine grains exhibit a weak fiber texture in the center of melt pool with a less restriction of the other two crystallographic axes perpendicular to the build direction. After heat treatment, the intensity of the textures of both samples is reduced. More recrystallized grains with twin boundaries are found under Gaussian mode due to the accumulated residual strain. This work manifests a promising method for texture customization by manipulating the heat flux strategy for laser additive manufacturing.(c) 2022 The Author(s). Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
引用
收藏
页码:2001 / 2012
页数:12
相关论文
共 50 条
  • [21] Effect of Laser Energy Density on the Microstructure and Microhardness of Inconel 718 Alloy Fabricated by Selective Laser Melting
    Xu, Jing
    Wu, Zichun
    Niu, Jianpeng
    Song, Yufeng
    Liang, Chaoping
    Yang, Kai
    Chen, Yuqiang
    Liu, Yang
    CRYSTALS, 2022, 12 (09)
  • [22] Effect of hatch length on the development of microstructure, texture and residual stresses in selective laser melted superalloy Inconel 718
    Nadammal, Naresh
    Cabeza, Sandra
    Mishurova, Tatiana
    Thiede, Tobias
    Kromm, Arne
    Seyfert, Christoph
    Farahbod, Lena
    Haberland, Christoph
    Schneider, Judith Ann
    Portella, Pedro Dolabella
    Bruno, Giovanni
    MATERIALS & DESIGN, 2017, 134 : 139 - 150
  • [23] The microstructure evolution and tensile properties of Inconel 718 fabricated by high-deposition-rate laser directed energy deposition
    Li, Zuo
    Chen, Jing
    Sui, Shang
    Zhong, Chongliang
    Lu, Xufei
    Lin, Xin
    ADDITIVE MANUFACTURING, 2020, 31 (31)
  • [24] Effect of processing parameters on microstructure of laser solid forming Inconel 718 superalloy
    Zhu, L.
    Xu, Z. F.
    Liu, P.
    Gu, Y. F.
    OPTICS AND LASER TECHNOLOGY, 2018, 98 : 409 - 415
  • [25] Evaluation of solidification and microstructure in laser cladding Inconel 718 superalloy
    Jelvani, Saeedeh
    Razavi, Reza Shoja
    Barekat, Masoud
    Dehnavi, Mohammad Reza
    Erfanmanesh, Mohammad
    OPTICS AND LASER TECHNOLOGY, 2019, 120
  • [26] Microstructure Evolution of TiC/Inconel 718 Composites Prepared by Direct Energy Deposition
    Liu, Wenbo
    Zou, Bin
    Lei, Ting
    Jia, Tianhao
    Liu, Jikai
    Li, Lei
    Wang, Xinfeng
    ADVANCED ENGINEERING MATERIALS, 2023, 25 (13)
  • [27] Formability, Microstructure and Properties of Inconel 718 Superalloy Fabricated by Selective Laser Melting Additive Manufacture Technology
    Liu, Xiaoping
    Wang, Kuaishe
    Hu, Ping
    He, Xiaomei
    Yan, Baicheng
    Zhao, Xuzhao
    MATERIALS, 2021, 14 (04) : 1 - 18
  • [28] Effect of Laser Remelting on Cladding Layer of Inconel 718 Superalloy Formed by Laser Metal Deposition
    Xin, Bo
    Ren, Jiangyu
    Wang, Xiaoqi
    Zhu, Lida
    Gong, Yadong
    MATERIALS, 2020, 13 (21) : 1 - 13
  • [29] Microstructure and mechanical properties of Inconel 718 thin walls prepared by laser direct energy deposition and selective laser melting
    Meng, Guiru
    Gong, Yadong
    Zhang, Jingdong
    Jiang, Zongze
    Ren, Qizhen
    Zhao, Jibin
    THIN-WALLED STRUCTURES, 2023, 193
  • [30] Study on microstructure and abrasive behaviors of inconel 718-WC composite coating fabricated by laser directed energy deposition
    He, Shanshan
    Park, Sanghu
    Shim, Do-sik
    Yao, Changliang
    Zhang, Wei-Jin
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2022, 21 : 2926 - 2946