Microstructure and wear properties of laser clad Fe based amorphous composite coatings


Autoria(s): Zhu, Q. J.; Wang, X. H.; Qu, S. Y.; Zou, Z. D.
Data(s)

01/04/2009

Resumo

A FeNiSiBV amorphous composite coating was developed by laser cladding of metallic powders on AISI 1020 low carbon steel substrate. The coatings were studied using X-ray diffraction, transmission electron microscopy and scanning electron microscopy. The coating reveals different microstructures along the depth of the coating. The transition zone exhibits good metallurgical bonding between the substrate and the coating. The layer consists of amorphous phase in majority and nanocrystalline phase/crystalline phase in minority. Accompanied with the nanocrystalline phase, the amorphous phase is concentrated in the middle of the coating. The crystalline phase in the coating is identified as Fe2B. A gradient distribution of the microhardness ranges from 1208 HV0.2 to 891 HV0.2 in the coating along the depth. The coating shows higher microhardness and better wear property than the substrate.

A FeNiSiBV amorphous composite coating was developed by laser cladding of metallic powders on AISI 1020 low carbon steel substrate. The coatings were studied using X-ray diffraction, transmission electron microscopy and scanning electron microscopy. The coating reveals different microstructures along the depth of the coating. The transition zone exhibits good metallurgical bonding between the substrate and the coating. The layer consists of amorphous phase in majority and nanocrystalline phase/crystalline phase in minority. Accompanied with the nanocrystalline phase, the amorphous phase is concentrated in the middle of the coating. The crystalline phase in the coating is identified as Fe(2)B. A gradient distribution of the microhardness ranges from 1208 HV0.2 to 891 HV0.2 in the coating along the depth. The coating shows higher microhardness and better wear property than the substrate.

Identificador

http://ir.qdio.ac.cn/handle/337002/2361

http://www.irgrid.ac.cn/handle/1471x/166854

Idioma(s)

英语

Fonte

Zhu, Q. J.; Wang, X. H.; Qu, S. Y.; Zou, Z. D..Microstructure and wear properties of laser clad Fe based amorphous composite coatings,SURFACE ENGINEERING,2009,25(3):201-205

Palavras-Chave #Materials Science, Coatings & Films #Amorphous #Microstructure #Laser cladding #Coating
Tipo

期刊论文