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Microstructure and Properties of Fe-Based Coating on Column Surface Formed by High Frequency Induction Cladding 被引量:4

Microstructure and Properties of Fe-Based Coating on Column Surface Formed by High Frequency Induction Cladding
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摘要 The Fe-based coating was produced on the surface of the column substrate with a Al2O3 cylindrical sleeve by high frequency induction cladding, microstructure of the coating was investigated with scanning electron microscope (SEM), the crystal structure was characterized by X-ray diffractometer (XRD), the microhardness and wear resisitance of the coating were evaluated. The results show that a metallurgical bond between coating and substrate was obtained during the rapid solidification, the phases of the coating were composed of austenite and the eutectic of γ-Fe + (Cr, Fe)7(C, B)3. Compared with the substrate, the microhardness and wear resistance of the coating improved apparently, solid-solution strengthening and second-phase particle hardening led to these results. The Fe-based coating was produced on the surface of the column substrate with a Al2O3 cylindrical sleeve by high frequency induction cladding, microstructure of the coating was investigated with scanning electron microscope (SEM), the crystal structure was characterized by X-ray diffractometer (XRD), the microhardness and wear resisitance of the coating were evaluated. The results show that a metallurgical bond between coating and substrate was obtained during the rapid solidification, the phases of the coating were composed of austenite and the eutectic of γ-Fe + (Cr, Fe)7(C, B)3. Compared with the substrate, the microhardness and wear resistance of the coating improved apparently, solid-solution strengthening and second-phase particle hardening led to these results.
机构地区 不详
出处 《Journal of Surface Engineered Materials and Advanced Technology》 2012年第1期40-43,共4页 表面工程材料与先进技术期刊(英文)
关键词 High Frequency INDUCTION CLADDING FE-BASED Coating Microstructure Wear Resisitance High Frequency Induction Cladding Fe-Based Coating Microstructure Wear Resisitance
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