High-strength and wear-resistant Co-Cr-Mo/diamond composites fabricated by selective laser melting

被引:17
|
作者
Tao, Yakun [1 ]
Gan, Jie [2 ]
Sun, Wucheng [1 ,3 ]
Zhou, Yan [4 ]
Duan, Longchen [1 ]
Wen, Shifeng [5 ]
Shi, Yusheng [5 ]
机构
[1] China Univ Geosci Wuhan, Fac Engn, Natl Ctr Int Res Deep Earth Drilling & Resource De, Wuhan 430074, Peoples R China
[2] City Univ Hong Kong, Dept Mat Sci & Engn, Hong Kong 999077, Peoples R China
[3] Natl Univ Singapore, Dept Mech Engn, 9 Engn Dr 1, Singapore 117575, Singapore
[4] Huazhong Univ Sci & Technol, Natl Ctr Technol Innovat Digital Construct, Sch Civil & Hydraul Engn, Wuhan 430074, Peoples R China
[5] Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Peoples R China
基金
中国国家自然科学基金;
关键词
Co-Cr-Mo; diamond composite; Selective laser melting (SLM); Metallurgical bonding; Hardness; Abrasion resistance; THERMAL-CONDUCTIVITY; DIAMOND; MICROSTRUCTURE;
D O I
10.1016/j.ijrmhm.2023.106169
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this study, selective laser melting (SLM), an additive manufacturing technology, is used to fabricate Co-Cr-Mo/ diamond (10 vol%) composite samples for application in the field of diamond tools. To obtain suitable SLM processing parameters, the samples were optimized in terms of the three-dimensional roughness, microhardness, relative density, and bending strength. The results indicated that the optimal SLM processing parameters were a laser power of 220 W, scanning speed of 750 mm/s, and layer thickness of 0.05 mm, and the bending strength of the samples reached 1000 MPa. Furthermore, the influence of the laser energy on the melting of the mixed powder, expansion of the melt pool, and bonding of Co-Cr-Mo/diamond composites during the SLM process was determined simultaneously. In addition, the abrasion resistances of the Co-Cr-Mo and Co-Cr-Mo/diamond-composite samples were compared using frictional wear tests. The results showed that the mass-loss of the Co-Cr-Mo samples equalled 2.1%, and the friction coefficient increased continuously from 0.13 to 0.75 before stabilizing. The mass-loss of the Co-Cr-Mo/diamond-composite sample equalled 0.3%, and the coefficient of friction maintained a dynamic equilibrium of approximately 0.3, which indicated that the Co-Cr-Mo/diamond-composite sample had better abrasion resistance. This study provides a new method for fabricating complex diamond tools with a high concentration of diamond in a refractory metal matrix.
引用
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页数:11
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