Experimental investigation of CMT discontinuous wire arc additive manufacturing of Inconel 625

被引:0
|
作者
Vojtěch Votruba
Ivan Diviš
Lucie Pilsová
Pavel Zeman
Libor Beránek
Jakub Horváth
Jan Smolík
机构
[1] Czech Technical University,Department of Production Machines and Equipment (RCMT), Faculty of Mechanical Engineering
[2] Czech Technical University,Department of Materials Engineering, Faculty of Mechanical Engineering
[3] Czech Technical University,Department of Production Machines and Equipment (RCMT), Faculty of Mechanical Engineering, Center of Advanced Aerospace Technology
来源
The International Journal of Advanced Manufacturing Technology | 2022年 / 122卷
关键词
Wire arc additive manufacturing; Cold metal transfer; Welding strategy; Inconel 625; Material properties;
D O I
暂无
中图分类号
学科分类号
摘要
Additive manufacturing (AM) is a progressive technology which holds promise for manufacturing of heat resistant super alloys. One of the most productive methods is wire arc additive manufacturing (WAAM). In this article, an alternative WAAM strategy is investigated. Experimental clads and material tests were performed to evaluate the material properties obtained through a cold metal transfer (CMT) discontinuous WAAM of Inconel 625 alloy. Using the modern terminology of Fronius Gmbh this method is called CMT cycle step. The difference is that it is automatically controlled by the welding source. CMT discontinuous WAAM has lower productivity and a higher consumption of shielding gas. However, it excels in low heat input and precise material cladding in comparison with a standard CMT continuous WAAM. It enables fabrication of finer details even on thin-walled components or in sections with problematic heat dissipation. Samples manufactured using this strategy were also compared with samples manufactured through a standard CMT continuous WAAM. Two sets of manufactured samples were thus tested. The following material tests were performed: (i) metallographic analysis, (ii) x-ray tomography, (iii) SEM analysis, (iv) hardness, (v) tensile strength (20 °C, 650 °C) and (vi) pin-on-disc (20 °C, 650 °C). The results show that the CMT discontinuous WAAM led to improved material properties in the Inconel 625 samples. Ultimate tensile strength improved by 15% at 20 °C and by 4% at 650 °C. Wear resistance at 650 °C was about two times higher. This paper concludes that the CMT discontinuous WAAM for Inconel 625 is definitely suitable for manufacturing of complex shapes, fine details and thin-walled components.
引用
收藏
页码:711 / 727
页数:16
相关论文
共 50 条
  • [21] Investigations on Deposition Geometry and Mechanical Properties of Wire Arc Additive Manufactured Inconel 625
    Ashish Kumar
    Kuntal Maji
    Ankit Shrivastava
    International Journal of Precision Engineering and Manufacturing, 2023, 24 : 1483 - 1500
  • [22] Investigations on Deposition Geometry and Mechanical Properties of Wire Arc Additive Manufactured Inconel 625
    Kumar, Ashish
    Maji, Kuntal
    Shrivastava, Ankit
    INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING, 2023, 24 (08) : 1483 - 1500
  • [23] Hydrogen Embrittlement of Ni-Based Superalloy Inconel 625 Fabricated by Wire Arc Additive Manufacturing: The Role of Laves Phase
    Junfeng Feng
    Xu Zhang
    Yajie Chu
    Jinchu Wan
    Metals and Materials International, 2024, 30 : 872 - 885
  • [24] Hydrogen Embrittlement of Ni-Based Superalloy Inconel 625 Fabricated by Wire Arc Additive Manufacturing: The Role of Laves Phase
    Feng, Junfeng
    Zhang, Xu
    Chu, Yajie
    Wan, Jinchu
    METALS AND MATERIALS INTERNATIONAL, 2024, 30 (04) : 872 - 885
  • [25] Experimental investigations on the effect of wire arc additive manufacturing process parameters on the layer geometry of Inconel 825
    Kumar, Bharat C. H.
    Anandakrishnan, V
    MATERIALS TODAY-PROCEEDINGS, 2020, 21 : 622 - 627
  • [26] Arc Behavior in Wire Arc Additive Manufacturing Process
    Shukla, Pranjal
    Dash, Balaram
    Kiran, Degala Venkata
    Bukkapatnam, Satish
    48TH SME NORTH AMERICAN MANUFACTURING RESEARCH CONFERENCE, NAMRC 48, 2020, 48 : 725 - 729
  • [27] Research Progress and Prospects of CMT-based Wire Arc Additive Manufacturing Technology for Titanium Alloys
    Yi Hao
    Huang Rufeng
    Cao Huajun
    Liu Menglin
    Zhou Jin
    CHINA SURFACE ENGINEERING, 2021, 34 (03) : 1 - 15
  • [28] Assessment of additive and subtractive sustainable manufacturing of Inconel 625
    Khanna, Navneet
    Raval, Parth
    Patel, Deep
    Prajapati, Ravikumar
    Schoop, Julius
    Gajrani, Kishor Kumar
    TRIBOLOGY INTERNATIONAL, 2023, 186
  • [29] Improvement in corrosion resistance of wire arc additive manufactured Inconel 625 alloy through heat treatment
    Zhao, Xipeng
    Di, Xinjie
    Zhang, Xi
    Li, Chengning
    MATERIALS RESEARCH EXPRESS, 2021, 8 (06)
  • [30] Investigation of Arc Stability in Wire Arc Additive Manufacturing of 2319 Aluminum Alloy
    Gao, Qiyu
    Lyu, Feiyue
    Wang, Leilei
    Zhan, Xiaohong
    MATERIALS, 2024, 17 (21)