Effects of Rare-Earth Oxides on the Microstructure and Mechanical Properties of Regenerated Cemented WC-12Co-2Ni Carbide

X. Q. Xia,M. F. Gong

Strength of Materials(2021)

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摘要
The effect of La 2 O 3 and Y 2 O 3 additions on the improvement of regenerated cemented carbide properties was investigated. The WC-Co powder recycled by the zinc melting method was used as a raw material, and five alloys were prepared by conventional powder metallurgy process by adding La 2 O 3 and Y 2 O 3 with 0, 0.3, and 0.6 wt.%, separately. The results show that they have a certain effect on the carbide compactness, but it is not obvious. When the La 2 O 3 or Y 2 O 3 content is less than 0.3 wt%, the hardness of regenerated cemented carbide will be slightly increased and then significantly decreased. A rare-earth oxide exhibits significant improvement of fracture toughness and transverse rupture strength, and the performance of carbide with Y 2 O 3 is better than that with La 2 O 3 . When 0.3 wt.% Y 2 O 3 is added, integrated mechanical properties of regenerated cemented carbide are excellent: hardness is 1720 HV30 kgf, fracture toughness is 8.41 MPa ·m 1/2 , and rupture strength is 1653 MPa.
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关键词
rare-earth, regenerated cemented carbide, mechanical properties, microstructure, La2O3, Y2O3
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