Effects of particle size and content of cladding powder on in situ synthesized WC‐reinforced Ni‐based cladding layers

材料科学 包层(金属加工) 碳化钨 复合材料 压痕硬度 粒径 微观结构 冶金 化学工程 工程类
作者
Cong‐xiao Zhang,Wan‐chang Sun,Eryong Liu,Yu‐wan Liu,Jing-Pei Liu,Bo Zhang,Mengran Zhou,Yi‐fan Xu,Ya‐peng Jia
出处
期刊:International Journal of Applied Ceramic Technology [Wiley]
卷期号:21 (3): 1625-1637 被引量:2
标识
DOI:10.1111/ijac.14609
摘要

Abstract Laser cladding technology can obtain a cladding layer with good metallurgical bonding with the substrate and excellent performance. In situ growth of hard phase can effectively solve the problem of uneven distribution of reinforcements directly doped with hard particles. In this paper, 45# steel was adopted as the matrix material, WO 3 , B 4 C, Al, and Ni60 powder were used to prepare laser cladding and in situ synthesized WC (Tungsten Carbide) hard phase reinforced Ni‐based cladding layers. The effects of different laser cladding parameters, powder particle size, hard phase content on the microstructures and electrochemical properties of in situ synthesized WC hard phase reinforced Ni‐based cladding layer were analyzed. The results revealed that when the (WO 3 + B 4 C + Al) mixed powder content was 25%, the bulk particles of WC phase in the cladding layer were most uniformly distributed in the cladding layer, which enhances the mechanical properties of the cladding layer. When the B 4 C particle size was 5 μm, the microhardness of the cladding layer was significantly higher than other cladding layers, and the enhancement mechanism of hardness by B 4 C is due to the Orowan strengthening caused by too small particle size of B 4 C.
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