The effect of laser in-situ induced graphene-like micro-texture on the friction and wear properties of ductile cast iron

Picosecond fiber laser was subjected on surface of ductile cast iron to induce graphene-like micro-texture array and enhance the tribological properties. The size of the dimples was regulated in the range of 5 μm–110 μm. The in-situ fabrication process was carried out on the workpiece surface in par...

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Main Authors: Zhiwen Wang, Weicheng Liu, Wei Yuan, Jianchen Cong, Prakash Chander, Linda Yongling Wu, Hongyu Zheng
Format: Article
Language:English
Published: Elsevier 2021-05-01
Series:Journal of Materials Research and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785421003823
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spelling doaj-dd85490f4f0248198492ffc32a6934da2021-05-24T04:31:14ZengElsevierJournal of Materials Research and Technology2238-78542021-05-011224072413The effect of laser in-situ induced graphene-like micro-texture on the friction and wear properties of ductile cast ironZhiwen Wang0Weicheng Liu1Wei Yuan2Jianchen Cong3Prakash Chander4Linda Yongling Wu5Hongyu Zheng6Centre for Advanced Laser Manufacturing (CALM), School of Mechanical Engineering, Shandong University of Technology, Zibo, 255000, ChinaCentre for Advanced Laser Manufacturing (CALM), School of Mechanical Engineering, Shandong University of Technology, Zibo, 255000, ChinaCentre for Advanced Laser Manufacturing (CALM), School of Mechanical Engineering, Shandong University of Technology, Zibo, 255000, ChinaCentre for Advanced Laser Manufacturing (CALM), School of Mechanical Engineering, Shandong University of Technology, Zibo, 255000, ChinaCentre for Advanced Laser Manufacturing (CALM), School of Mechanical Engineering, Shandong University of Technology, Zibo, 255000, ChinaCentre for Advanced Laser Manufacturing (CALM), School of Mechanical Engineering, Shandong University of Technology, Zibo, 255000, ChinaCorresponding author.; Centre for Advanced Laser Manufacturing (CALM), School of Mechanical Engineering, Shandong University of Technology, Zibo, 255000, ChinaPicosecond fiber laser was subjected on surface of ductile cast iron to induce graphene-like micro-texture array and enhance the tribological properties. The size of the dimples was regulated in the range of 5 μm–110 μm. The in-situ fabrication process was carried out on the workpiece surface in parallel manner and the scanning speed can be up to 3 m/s. The formation mechanism of graphene-like structure was analyzed. The tribological properties of the textured samples were investigated using a ball-on-disk tribometer. The results showed that the laser textured samples exhibit low coefficient of friction and the anti-wear properties were improved significantly. The textured sample showed no distinct wear pit, while the non-textured sample showed typical wear pit with depth up to 15 μm. Volume wear rate was reduced by 69.6 ± 6.9%. The graphene-like micro-texture array conducted by picosecond fiber laser scanning will not change the material isotropic, and the improved tribological properties are attributed to the combined effects of the increased surface hardness, improved heat dispersion property and entrapment of wear debris.http://www.sciencedirect.com/science/article/pii/S2238785421003823Picosecond laserLaser texturingDuctile cast ironTribological properties
collection DOAJ
language English
format Article
sources DOAJ
author Zhiwen Wang
Weicheng Liu
Wei Yuan
Jianchen Cong
Prakash Chander
Linda Yongling Wu
Hongyu Zheng
spellingShingle Zhiwen Wang
Weicheng Liu
Wei Yuan
Jianchen Cong
Prakash Chander
Linda Yongling Wu
Hongyu Zheng
The effect of laser in-situ induced graphene-like micro-texture on the friction and wear properties of ductile cast iron
Journal of Materials Research and Technology
Picosecond laser
Laser texturing
Ductile cast iron
Tribological properties
author_facet Zhiwen Wang
Weicheng Liu
Wei Yuan
Jianchen Cong
Prakash Chander
Linda Yongling Wu
Hongyu Zheng
author_sort Zhiwen Wang
title The effect of laser in-situ induced graphene-like micro-texture on the friction and wear properties of ductile cast iron
title_short The effect of laser in-situ induced graphene-like micro-texture on the friction and wear properties of ductile cast iron
title_full The effect of laser in-situ induced graphene-like micro-texture on the friction and wear properties of ductile cast iron
title_fullStr The effect of laser in-situ induced graphene-like micro-texture on the friction and wear properties of ductile cast iron
title_full_unstemmed The effect of laser in-situ induced graphene-like micro-texture on the friction and wear properties of ductile cast iron
title_sort effect of laser in-situ induced graphene-like micro-texture on the friction and wear properties of ductile cast iron
publisher Elsevier
series Journal of Materials Research and Technology
issn 2238-7854
publishDate 2021-05-01
description Picosecond fiber laser was subjected on surface of ductile cast iron to induce graphene-like micro-texture array and enhance the tribological properties. The size of the dimples was regulated in the range of 5 μm–110 μm. The in-situ fabrication process was carried out on the workpiece surface in parallel manner and the scanning speed can be up to 3 m/s. The formation mechanism of graphene-like structure was analyzed. The tribological properties of the textured samples were investigated using a ball-on-disk tribometer. The results showed that the laser textured samples exhibit low coefficient of friction and the anti-wear properties were improved significantly. The textured sample showed no distinct wear pit, while the non-textured sample showed typical wear pit with depth up to 15 μm. Volume wear rate was reduced by 69.6 ± 6.9%. The graphene-like micro-texture array conducted by picosecond fiber laser scanning will not change the material isotropic, and the improved tribological properties are attributed to the combined effects of the increased surface hardness, improved heat dispersion property and entrapment of wear debris.
topic Picosecond laser
Laser texturing
Ductile cast iron
Tribological properties
url http://www.sciencedirect.com/science/article/pii/S2238785421003823
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