Additive manufacturing of WC-Co hardmetals: a review

被引:0
|
作者
Yankun Yang
Chaoqun Zhang
Dayong Wang
Liping Nie
Daniel Wellmann
Yingtao Tian
机构
[1] Shanghai Jiao Tong University,School of Mechanical Engineering
[2] Beijing General Research Institute of Mining and Metallurgy,BGRIMM Technology Group
[3] Dong Fang Turbine Co.,State Key Laboratory of Long
[4] Ltd.,life High Temperature Materials
[5] Dongfang Electric Corporation Dongfang Turbine Co.,Department of Engineering
[6] LTD,undefined
[7] Lancaster University,undefined
关键词
Additive manufacturing; WC-Co hardmetals; Selective laser melting; Binder jet additive manufacturing; Selective electron beam melting; Fused filament fabrication; Cermet;
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中图分类号
学科分类号
摘要
WC-Co hardmetals are widely used in wear-resistant parts, cutting tools, molds, and mining parts, owing to the combination of high hardness and high toughness. WC-Co hardmetal parts are usually produced by casting and powder metallurgy, which cannot manufacture parts with complex geometries and often require post-processing such as machining. Additive manufacturing (AM) technologies are able to fabricate parts with high geometric complexity and reduce post-processing. Therefore, additive manufacturing of WC-Co hardmetals has been widely studied in recent years. In this article, the current status of additive manufacturing of WC-Co hardmetals is reviewed. The advantages and disadvantages of different AM processes used for producing WC-Co parts, including selective laser melting (SLM), selective electron beam melting (SEBM), binder jet additive manufacturing (BJAM), 3D gel-printing (3DGP), and fused filament fabrication (FFF) are discussed. The studies on microstructures, defects, and mechanical properties of WC-Co parts manufactured by different AM processes are reviewed. Finally, the remaining challenges in additive manufacturing of WC-Co hardmetals are pointed out and suggestions on future research are discussed.
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页码:1653 / 1673
页数:20
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