Characterization of an austenitic stainless steel preform deposited by wire arc additive manufacturing

被引:0
|
作者
Lídia B. O. Souza
Maria R. N. Santos
Regina P. Garcia
Diandro B. Fernandes
Louriel O. Vilarinho
机构
[1] Federal University of Uberlândia,
关键词
316L; WAAM; Microstructure; Mechanical strength; Electrochemistry;
D O I
暂无
中图分类号
学科分类号
摘要
Additive manufacturing (AM) is a fabrication process based on the addition of material by layers and has shown several advantages against other manufacturing processes, such as low cost and possibility of manufacturing parts with complex geometries. However, the additive manufacturing can change the properties of the workpiece due to the strategy of multilayer deposition, which can cause changes in the microstructure of the deposited material. In this sense, this work aimed to evaluate the chemical composition, microstructure, and mechanical and electrochemical behavior of the 316L stainless steel manufactured by wire and arc additive manufacturing (WAAM), comparing it with a sample of the same alloy in the annealed condition, trying to understand how the different layers interfere in the final behavior of the material. The results indicate that the microstructure of the deposited material is different with the presence of ferrite in an austenitic matrix. Two regions whose microstructure had different morphologies were also identified in the WAAM alloy. In the region close to the fusion line between the deposited layers, the austenite grains are smaller, about 5 μm wide, against 10 μm of the grains in the area most to the center of the layers. This microstructural change caused an irregular microhardness profile, with an average of 276 HV, higher than the 190 HV of conventional material. It was also observed that the WAAM process caused a decrease in the yield strength (YS) (23%) and elongation (78%) of the alloy and a slight increase in the value of ultimate tensile strength (UTS) (9%); however, it still meets the minimum requirements for most industrial applications required for the material studied (min. UTS 485 MPa, min. YS 170 MPa, and min. elongation 35 MPa). Moreover, the electrochemical results in simulated seawater solution indicate that the corrosion potential of the deposited sample is like that of the conventional specimen (about 0.24 V), with the potential passivating of the first to be superior to that of the second, respectively, 0.640 V and 0.560 V.
引用
收藏
页码:3673 / 3686
页数:13
相关论文
共 50 条
  • [1] Characterization of an austenitic stainless steel preform deposited by wire arc additive manufacturing
    Souza, Lidia B. O.
    Santos, Maria R. N.
    Garcia, Regina P.
    Fernandes, Diandro B.
    Vilarinho, Louriel O.
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2022, 123 (9-10): : 3673 - 3686
  • [2] Fatigue Behavior of Austenitic Stainless Steel 347 Fabricated via Wire Arc Additive Manufacturing
    Duraisamy, R.
    Kumar, S. Mohan
    Kannan, A. Rajesh
    Shanmugam, N. Siva
    Sankaranarayanasamy, K.
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2021, 30 (09) : 6844 - 6850
  • [3] Fatigue Behavior of Austenitic Stainless Steel 347 Fabricated via Wire Arc Additive Manufacturing
    R. Duraisamy
    S. Mohan Kumar
    A. Rajesh Kannan
    N. Siva Shanmugam
    K. Sankaranarayanasamy
    Journal of Materials Engineering and Performance, 2021, 30 : 6844 - 6850
  • [4] Mechanical behavior of austenitic stainless steels produced by wire arc additive manufacturing
    Chen, Man-Tai
    Gong, Zhichao
    Zhang, Tianyi
    Zuo, Wenkang
    Zhao, Yang
    Zhao, Ou
    Zhang, Guodong
    Wang, Zhongxing
    THIN-WALLED STRUCTURES, 2024, 196
  • [6] Optimization of the pulsed arc welding parameters for wire arc additive manufacturing in austenitic steel applications
    Anatoliy Zavdoveev
    Valeriy Pozniakov
    Thierry Baudin
    Hyoung Seop Kim
    Ilya Klochkov
    Sviatoslav Motrunich
    Mark Heaton
    Philippe Aquier
    Massimo Rogante
    Anatoliy Denisenko
    Alex Gajvoronskiy
    Mykola Skoryk
    The International Journal of Advanced Manufacturing Technology, 2022, 119 : 5175 - 5193
  • [7] Optimization of the pulsed arc welding parameters for wire arc additive manufacturing in austenitic steel applications
    Zavdoveev, Anatoliy
    Pozniakov, Valeriy
    Baudin, Thierry
    Kim, Hyoung Seop
    Klochkov, Ilya
    Motrunich, Sviatoslav
    Heaton, Mark
    Aquier, Philippe
    Rogante, Massimo
    Denisenko, Anatoliy
    Gajvoronskiy, Alex
    Skoryk, Mykola
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2022, 119 (7-8): : 5175 - 5193
  • [8] Optimization of the pulsed arc welding parameters for wire arc additive manufacturing in austenitic steel applications
    Zavdoveev, Anatoliy
    Pozniakov, Valeriy
    Baudin, Thierry
    Kim, Hyoung Seop
    Klochkov, Ilya
    Motrunich, Sviatoslav
    Heaton, Mark
    Aquier, Philippe
    Rogante, Massimo
    Denisenko, Anatoliy
    Gajvoronskiy, Alex
    Skoryk, Mykola
    International Journal of Advanced Manufacturing Technology, 2022, 119 (7-8): : 5175 - 5193
  • [9] Effects of linear heat input on microstructure and corrosion behavior of an austenitic stainless steel processed by wire arc additive manufacturing
    Wen, DongXu
    Long, Ping
    Li, JianJun
    Huang, Liang
    Zheng, ZhiZhen
    VACUUM, 2020, 173
  • [10] Studies on Super Duplex Stainless Steel Manufactured by Wire Arc Additive Manufacturing
    A. Rajesh Kannan
    N. Siva Shanmugam
    K. Devendranath Ramkumar
    V. Rajkumar
    Transactions of the Indian Institute of Metals, 2021, 74 : 1673 - 1681