Literature DB >> 29556818

The effect of 3 wt.% Cu addition on the microstructure, tribological property and corrosion resistance of CoCrW alloys fabricated by selective laser melting.

Jiasi Luo1,2, Songquan Wu1,2, Yanjin Lu1,2, Sai Guo1,2, Yang Yang1, Chaoqian Zhao1,2, Junjie Lin1, Tingting Huang1, Jinxin Lin3,4.   

Abstract

Microstructure, tribological property and corrosion resistance of orthopedic implant materials CoCrW-3 wt.% Cu fabricated by selective laser melting (SLM) process were systematically investigated with CoCrW as control. Equaxied γ-phase together with the inside {111} < 112 > type twin and platelet ε-phase was found in both the Cu-bearing and Cu-free alloys. Compared to the Cu-free alloy, the introduction of 3 wt.% Cu significantly increased the volume fraction of the ε-phase. In both alloys, the hardness of ε-phase zone was rather higher (~4 times) than that of γ-phase zone. The wear factor of 3 wt.% Cu-bearing alloy possessed smaller wear factor, although it had higher friction coefficient compared with Cu-free alloys. The ε-phase in the CoCr alloy would account for reducing both abrasive and fatigue wear. Moreover, the Cu-bearing alloy presented relatively higher corrosion potential Ecorr and lower corrosion current density Icorr compared to the Cu-free alloy. Accordingly, 3 wt.% Cu addition plays a key role in enhancing the wear resistance and corrosion resistance of CoCrW alloys, which indicates that the SLM CoCrW-3Cu alloy is a promising personalized alternative for traditional biomedical implant materials.

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Year:  2018        PMID: 29556818     DOI: 10.1007/s10856-018-6043-7

Source DB:  PubMed          Journal:  J Mater Sci Mater Med        ISSN: 0957-4530            Impact factor:   3.896


  22 in total

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5.  Preliminary assessment of metal-porcelain bonding strength of CoCrW alloy after 3wt.% Cu addition.

Authors:  Yanjin Lu; Chaoqian Zhao; Ling Ren; Sai Guo; Yiliang Gan; Chunguang Yang; Songquan Wu; Junjie Lin; Tingting Huang; Ke Yang; Jinxin Lin
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  2 in total

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2.  Effect of Ni, W and Mo on the microstructure, phases and high-temperature sliding wear performance of CoCr matrix alloys.

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Journal:  Sci Technol Adv Mater       Date:  2020-04-27       Impact factor: 8.090

  2 in total

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