材料科学
微观结构
碳化物
合金
硬质合金
韧性
晶界
粒度
复合材料
冶金
相(物质)
断裂韧性
碳纤维
复合数
有机化学
化学
作者
Cheng Qian,Yong Liu,Huichao Cheng,Kun Li,Bin Liu,Xin Zhang
出处
期刊:Materials
[MDPI AG]
日期:2022-08-21
卷期号:15 (16): 5780-5780
被引量:5
摘要
CoNiFeCr high entropy alloy (HEA) was used as a binder in cemented carbides for developing a new high-performance binder. The microstructure of WC-HEA cemented carbides with different binder components and carbon contents was subsequently studied. It was observed that the (Cr,W)C phase precipitated at the WC/HEA interface, and a coherent interface with a low degree of misfit was formed between WC and (Cr,W)C, thereby resulting in a significant reduction in the interfacial energy and stress concentration. The (Cr,W)C phase exerted a pinning force (Zener-drag) on the moving grain boundaries, which effectively inhibited the growth of WC grains. As a result, compared with WC-Co, WC-CoNiFeCr had smaller WC grain size, smoother grain shape and larger mean free path (MFP) of the binder, which resulted in slightly lower hardness and higher transverse rupture strength (TRS) and fracture toughness. The lower limit of carbon content in WC-CoNiFeCr was higher than that of WC-Co. With the addition of Ni, the width of the two-phase region became wider, whereas the width of the two-phase region became narrower with the addition of Fe and Cr.
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