简介概要

THE INTERFACE OF TERNARY-BORIDE-BASED HARD CLADDING MATERIAL

来源期刊:Acta Metallurgica Sinica2004年第1期

论文作者:Y.G.Wang D.Zhang Z.Q.Li

Key words:ternary boride; cladding material; interface; microstructure;

Abstract: The interfacial microstructure of ternary-boride-based hard cladding material (YF2) has been studied using scanning electron microanalyser (SEM), X-ray diffraction (XRD) and energy disperse spectroscopy (EDS). Results show that there are chemical reactions and elements diffusion in the interfacial zone, which make the interface bonding well and bonding strength ideal at the interface. The results gotten by studying of crack produced by Vickers indentation technique in the interfacial zone show that it is difficult to produce crack in the interface, the crack length in the cladding layer is longer than that to the interface, the crack which propagate to the interface stops at the interface rather than propagates along the interface. This suggests negligible residual stresses have developed because of thermal expansion mismatch. The bonding strength of the interface is 550MPa, which has been gotten by cutting test. The result gotten by analyzing the fracture surface shows that the fracture occurs at the side of cladding layer, which confirms that the bonding strength at the interface is higher than that in the cladding layer.

详情信息展示

THE INTERFACE OF TERNARY-BORIDE-BASED HARD CLADDING MATERIAL

Y.G.Wang1,D.Zhang1,Z.Q.Li2

(1.State Key Laboratory of Metal Matrix Composites, Shanghai Jiaotong University, Shanghai 200030,China;
2.Mechanical Engineering Department, Shandong University, Jinan 250061, China)

Abstract:The interfacial microstructure of ternary-boride-based hard cladding material (YF2) has been studied using scanning electron microanalyser (SEM), X-ray diffraction (XRD) and energy disperse spectroscopy (EDS). Results show that there are chemical reactions and elements diffusion in the interfacial zone, which make the interface bonding well and bonding strength ideal at the interface. The results gotten by studying of crack produced by Vickers indentation technique in the interfacial zone show that it is difficult to produce crack in the interface, the crack length in the cladding layer is longer than that to the interface, the crack which propagate to the interface stops at the interface rather than propagates along the interface. This suggests negligible residual stresses have developed because of thermal expansion mismatch. The bonding strength of the interface is 550MPa, which has been gotten by cutting test. The result gotten by analyzing the fracture surface shows that the fracture occurs at the side of cladding layer, which confirms that the bonding strength at the interface is higher than that in the cladding layer.

Key words:ternary boride; cladding material; interface; microstructure;

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