Additive Manufacturing of WC-Co Specimens with Internal Channels

被引:9
作者
Sykora, Jindrich [1 ]
Sedlmajer, Michael [2 ]
Schubert, Tim [3 ]
Merkel, Markus [2 ]
Kroft, Lubos [1 ]
Kucerova, Ludmila [4 ]
Rehor, Jan [1 ]
机构
[1] Univ West Bohemia, Dept Machining Technol, Univerzitni 8, Plzen 30100, Czech Republic
[2] Aalen Univ Appl Sci, Inst Virtual Prod Dev, Beethovenstr 1, D-73430 Aalen, Germany
[3] Aalen Univ Appl Sci, Mat Res Inst Aalen, Beethovenstr 1, D-73430 Aalen, Germany
[4] Univ West Bohemia, Dept Mat & Engn Met, Univerzitni 8, Plzen 30100, Czech Republic
关键词
3D printing; preheating; additive manufacturing; efficient cooling; tungsten carbide; indexable insert;
D O I
10.3390/ma16113907
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Most material removal in modern manufacturing is currently performed using tools with indexable inserts. Additive manufacturing allows for the creation of new, experimental insert shapes and, more importantly, internal structures, such as channels for coolant. This study deals with developing a process for efficiently manufacturing WC-Co specimens with internal coolant channels with a focus on obtaining a suitable microstructure and surface finish, especially inside the channels. The first part of this study covers the development of process parameters to achieve a microstructure without cracks and with minimal porosity. The next stage focuses solely on improving the surface quality of the parts. Special attention is given to the internal channels, where true surface area and surface quality are evaluated, as these characteristics greatly influence coolant flow. To conclude, WC-Co specimens were successfully manufactured and a microstructure with low porosity and no cracks was achieved and an effective parameter set was found. We have developed a process that produces parts with a surface roughness comparable to those of standard SLS manufacturing of steel parts, while still providing a high-quality internal microstructure. The most suitable parameter set resulted in a profile surface roughness of Ra 4 mu m and Rz 31 mu m and areal surface roughness of Sa 7 mu m and Sz 125 mu m.
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页数:16
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共 29 条
  • [1] Investigation of ABS-oil palm fiber (Elaeis guineensis) composites filament as feedstock for fused deposition modeling
    Ahmad, Mohd Nazri
    Ishak, Mohamad Ridzwan
    Mohammad Taha, Mastura
    Mustapha, Faizal
    Leman, Zulkiflle
    [J]. RAPID PROTOTYPING JOURNAL, 2023, 29 (05) : 897 - 909
  • [2] Berger C., 2018, P EUR PM 2018 C EXH, P6
  • [3] Development of the Structure of Cemented Carbides during Their Processing by SLM and HIP
    Bricin, David
    Ackermann, Michal
    Jansa, Zdenek
    Kubatova, Dana
    Kriz, Antonin
    Spirit, Zbynek
    Safka, Jiri
    [J]. METALS, 2020, 10 (11) : 1 - 17
  • [4] Printability and Microstructure of Selective Laser Melting of WC/Co/Cr Powder
    Campanelli, Sabina Luisa
    Contuzzi, Nicola
    Posa, Paolo
    Angelastro, Andrea
    [J]. MATERIALS, 2019, 12 (15)
  • [5] Microstructure analysis of high density WC-Co composite prepared by one step selective laser melting
    Chen, Jian
    Huang, Miaojun
    Fang, Zak Zhigang
    Koopman, Mark
    Liu, Wei
    Deng, Xin
    Zhao, Zhe
    Chen, Shaohua
    Wu, Shanghua
    Liu, Jianye
    Qi, Wenjun
    Wang, Zhongping
    [J]. INTERNATIONAL JOURNAL OF REFRACTORY METALS & HARD MATERIALS, 2019, 84
  • [6] Future research directions in the machining of Inconel 718
    De Bartolomeis, Andrea
    Newman, Stephen T.
    Jawahir, I. S.
    Biermann, Dirk
    Shokrani, Alborz
    [J]. JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2021, 297
  • [7] EOS GmbH, 2020, EOS MARAG STEEL MS1
  • [8] Laser-Based Additive Manufacturing of WC-Co with High-Temperature Powder Bed Preheating
    Fries, Sofia
    Genilke, Stephan
    Wilms, Markus Benjamin
    Seimann, Martin
    Weisheit, Andreas
    Kaletsch, Anke
    Bergs, Thomas
    Schleifenbaum, Johannes Henrich
    Broeckmann, Christoph
    [J]. STEEL RESEARCH INTERNATIONAL, 2020, 91 (03)
  • [9] Design for sustainable additive manufacturing: A review
    Hegab, Hussien
    Khanna, Navneet
    Monib, Neamat
    Salem, Amr
    [J]. SUSTAINABLE MATERIALS AND TECHNOLOGIES, 2023, 35
  • [10] Hoganas Germany GmbH, 2020, POWD THERM SPRAYING