Investigation of Cu–Fe-based coating produced on copper alloy substrate by laser induction hybrid rapid cladding
2014; Elsevier BV; Volume: 59; Linguagem: Inglês
10.1016/j.optlastec.2013.12.013
ISSN1879-2545
AutoresShengfeng Zhou, Tianyou Zhang, Zheng Xiong, Xiaoqin Dai, Chao Wu, Z.K. Shao,
Tópico(s)High-Temperature Coating Behaviors
ResumoThe Cu–Fe-based coating was produced on copper alloy substrate by laser induction hybrid rapid cladding (LIHRC). The results showed that the maximum laser scanning speed and the maximum powder feeding rate can be increased to 3200 mm/min and 110 g/min, respectively. The coating was mainly composed of α-Fe and ε-Cu phases. At the bottom of coating, Cu-rich matrix took on planar growth and columnar dendritic morphology. In the center of coating, Fe-rich spherical particles containing a supersaturated Cu were embedded in Cu-rich matrix and many fine Cu-rich grains were precipitated inside the Fe-rich spherical particles. However, at the top of coating, the smaller Fe-rich spherical particles were embedded inside the larger Cu-rich spherical particles which were embedded in the dendritic Fe-rich matrix. The microhardness of coating was much three times higher than that of substrate.
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