Friction and Wear Behavior of Laser Cladding NiAl/hBN Self-Lubricating Composite Coating

2009 ◽  
pp. 442-442 ◽  
Author(s):  
Shitang Zhang ◽  
Jiansong Zhou ◽  
Baogang Guo ◽  
Huidi Zhou ◽  
Yuping Pu ◽  
...  
2008 ◽  
Vol 491 (1-2) ◽  
pp. 47-54 ◽  
Author(s):  
Shitang Zhang ◽  
Jiansong Zhou ◽  
Baogang Guo ◽  
Huidi Zhou ◽  
Yuping Pu ◽  
...  

2016 ◽  
Vol 31 (2) ◽  
pp. 195
Author(s):  
GUO Wen ◽  
MI Guo-Ji ◽  
ZHANG Jin-Long ◽  
WANG Zhen-Ya

2011 ◽  
Vol 189-193 ◽  
pp. 3721-3725 ◽  
Author(s):  
Qiu He Yang ◽  
Shao Yi Guo ◽  
Li Xia Wang ◽  
Xing Jun Li

To reduced the defect of the layer cladding reinforced by WC/WC-Ni Particles, and to attained the effective handicraft to strengthen the properties of the mold surface, using laser cladding technique , nano TiC reinforced WC/WC-Ni composite cladding were fabricated on the surface of H13 steel substrates. The cladding microhardness was measured with Victoria-hardness tester, the cross-section microstructure of the claddings was observed with optical microscope. The fabrication of the composite claddings was investigated. The friction and properties were examined under dry sliding conditions with a WTM—1E type ball-on-disc tester. The wear tracks were observed with a JSM-5610 type scanning microscope. The wear mechanisms were discussed as well. The results showed that, owing to the NanoTiC fine-crystalline strengthening and dispersive strengthening, the Nano TiC/WC/WC–Ni composite cladding was very compact and good blinding with the substrate after laser remelting, and then sub-micro-fracture and adhesion wear of WC cladding were reduced. During the friction process, Nano TiC particles had a significant influence on the Friction and wear behavior of laser cladding: The friction coefficient reduced and wear-resistance strengthened of composites with increasing proportion of TiC. The wear mass loss of the 20% TiC composite cladding reduced to about 1/3 of those with 5% TiC cladding.


2014 ◽  
Vol 809-810 ◽  
pp. 676-681
Author(s):  
Da Wei Yi

Ni-P-β-SiC was prepared using different granularity β-SiC and rolling electroless plating technology. The test results show that β-SiC particles in composite coating are uniform, and the thickness and hardness of composite coating are 17~25μm and 520~620HV, respectively. At the same time, the friction and wear behavior of Ni-P-β-SiC composition coating have been studied. The results show that the wear weight loss decrease and the friction coefficient increase with the increase of β-SiC granularity.


2011 ◽  
Vol 308-310 ◽  
pp. 837-842
Author(s):  
Liang Zhong ◽  
Li Hou ◽  
Chuan Hui Liu ◽  
Qin Ying

In order to improve the dispersion performance of nano-C60 crystals, the surface metallization was achieved by electro less nickel plating; By the laser-induced way, a new composite coating was got on a micromechanical device, which contained some metalized nano-C60 crystals. Research on the fretting friction and wear behavior of the composite coating, its ability of Wear Resistance were improved evidently.


2013 ◽  
Vol 747-748 ◽  
pp. 146-151 ◽  
Author(s):  
Shu Fa Chen ◽  
Cheng Long Feng ◽  
Jin Yang ◽  
Jin Song Chen

NiCr/Cr3C2-WS2-CaF2 mixed powders were prepared on 1Cr18Ni9Ti stainless steel substrate to fabricate high-temperature self-lubrication wear resistant composite coating by laser cladding. The microstructure of the coating was examined by means of XRD, SEM and EDS. The high-temperature dry sliding friction and wear behavior of the composite coating were evaluated by using a ball-on-block wear tester at room temperature, 300 and 600 , respectively. The results showed that the composite coating had a unique microstructure consisting of γ-(Ni,Fe) solid solution matrix, Cr7C3/WC reinforcement and CrS/WS2 lubricant particles. The hardness of NiCr/Cr3C2-WS2-CaF2 coating by laser cladding was lower than NiCr/Cr3C2 coating, but higher than stainless steel substrate significantly. It was because of the addition of solid lubricant. In the wear process, elevated temperature was helpful to form a lubricating transfer film. As a result, the NiCr/Cr3C2-WS2-CaF2 coating exhibited a notable anti-friction and wear resistance at 300 and 600 .


2021 ◽  
Vol 6 (6) ◽  
pp. 1288-1296
Author(s):  
Hongming Wie ◽  
Jianpeng Zou ◽  
Xiaoya Li ◽  
Cong Xiao

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