High temperature tribological properties of laser cladding <i>in-situ</i> carbide reinforced self-lubricating wear resistant composite coating

The NiCrBSi-Ti<sub>3</sub>SiC<sub>2</sub>-CaF<sub>2</sub>-WC self-lubricating anti-wear composite coating was fabricated on TC11 alloy substrate by laser cladding. The phase compositions and microstructure were invest-igated by X-ray diffractometer (XRD), scanning...

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Bibliographic Details
Main Authors: WANG Yong-gang, LIU He-jian, HUI Li, ZHI Shan-jie, LIU Hai-qing
Format: Article
Language:zho
Published: Journal of Materials Engineering 2019-05-01
Series:Cailiao gongcheng
Subjects:
Online Access:http://jme.biam.ac.cn/CN/Y2019/V47/I5/72
Description
Summary:The NiCrBSi-Ti<sub>3</sub>SiC<sub>2</sub>-CaF<sub>2</sub>-WC self-lubricating anti-wear composite coating was fabricated on TC11 alloy substrate by laser cladding. The phase compositions and microstructure were invest-igated by X-ray diffractometer (XRD), scanning electron microscope (SEM) and energy dispersive spectrometer (EDS). Microhardness was measured with a microhardness tester. Tribological proper-ties of the fabricated composite coatings were evaluated under dry sliding condition at room-temper-ature (25℃), 300℃ and 600℃, and the wear mechanism was analyzed. The results show that the mi-crostructure of the composite coatings consists of <i>γ</i>-Ni eutectic phase, <i>M</i><sub>23</sub>C<sub>6</sub>,TiC, (Ti,W)C,Ti<sub>5</sub>Si<sub>3</sub> hard phase and some Ti<sub>3</sub>SiC<sub>2</sub>,CaF<sub>2</sub>,TiF<sub>3</sub> lubricating phase. The microhardness of laser cladding layer is improved greatly. The average microhardness of the laser cladding coating is 863.63HV<sub>0.2</sub>, which is 2.46 times of the matrix. The friction coefficient and wear rate are lower than that of the substrate. The lowest friction coefficient and wear rate are 0.275 and 4.8&#215;10<sup>-5</sup>mm<sup>3</sup>&#183;N<sup>-1</sup>&#183;m<sup>-1</sup> at 300℃, respectively.
ISSN:1001-4381
1001-4381