Effect of Ni on the Microstructure and Diffusion Behavior at the Interface of WC/High-Speed Steel Composites
Hong‐Nan Li, Ling Yan, Linghao Meng, Yan Li, Fangfang Ai, Hongmei Zhang, Zhengyi Jiang
Abstract
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Hong‐Nan Li, Ling Yan, Linghao Meng, Yan Li, Fangfang Ai, Hongmei Zhang, Zhengyi Jiang
Abstract
Open-access reader
In this study, WC-Ni/high-speed steel composite materials for application as micro-drills were prepared by cold pressing and high-temperature vacuum sintering using a self-designed mold in the laboratory. The effect of Ni on the microstructure and diffusion behavior at the interface of the WC/high-speed steel composite was investigated. The results show that the addition of Ni promoted the diffusion of elements, and reduced defects such as micropores and microcracks at the WC/high-speed steel composite interface. It also improved the bonding strength of the WC/high-speed steel composite interface, and significantly decreased the WC hardness.
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In this study, WC-Ni/high-speed steel composite materials for application as micro-drills were prepared by cold pressing and high-temperature vacuum sintering using a self-designed mold in the laboratory. The effect of Ni on the microstructure and diffusion behavior at the interface of the WC/high-speed steel composite was investigated. The results show that the addition of Ni promoted the diffusion of elements, and reduced defects such as micropores and microcracks at the WC/high-speed steel composite interface. It also improved the bonding strength of the WC/high-speed steel composite interface, and significantly decreased the WC hardness.
Key concepts: Microstructure, Materials science, High-speed steel, Composite number, Composite material, Diffusion, Sintering, Diffusion bonding