Study on the microstructure and properties of a laser cladding Fe-Ni-Al coating based on the invar effect.

Zhen Wang, Jian Zhang, Fengqin Zhang, Changbao Qi
Author Information
  1. Zhen Wang: Urban Rail Research Institute, Shandong Polytechnic, Jinan, 250104, China. 1715@sdp.edu.cn.
  2. Jian Zhang: Key Laboratory of Conveyance and Equipment Ministry of Education, East China Jiaotong University, Nanchang, 330013, China.
  3. Fengqin Zhang: Urban Rail Research Institute, Shandong Polytechnic, Jinan, 250104, China.
  4. Changbao Qi: College of Locomotive and Rolling Stock Engineering, Dalian Jiaotong University, Dalian, 116000, China.

Abstract

The purpose of this study was to investigate the effect of Al content on Fe-Ni-Al coatings. A Fe-Ni-Al coating was prepared using a semiconductor laser, and the influence of the Al content on the microstructure and properties of the coating was examined. The microstructure of the coating was characterized using scanning electron microscopy, X-ray diffraction, and energy-dispersive X-ray spectroscopy. The coefficient of thermal expansion of the coating was measured using a static thermomechanical analyzer. The microhardness and wear performance of the coating were analyzed using a microhardness tester and a wear testing machine. The results were as follows. The addition of Al to the Fe-Ni ferroalloy powder resulted in the in situ formation of an AlNi/Fe-Ni laser cladding layer. When the Al content was low, the coating mainly consisted of γ-[Fe,Ni] austenite. As the Al content increased, the matrix phase structure of the cladding layer transformed into the α phase. Consequently, the Invar effect was gradually compromised, leading to the generation of defects in the coating. When the Al content was 4%, the coating performance improved while maintaining a low coefficient of thermal expansion. At this point, there were relatively few cracks in the cladding layer, and it exhibited the best wear resistance.

Keywords

References

  1. Nature. 2015 Feb 5;518(7537):77-9 [PMID: 25652998]
  2. Materials (Basel). 2019 Apr 20;12(8): [PMID: 31010010]

Grants

  1. ZI2021090301/The second batch of national level vocational education teacher innovation team research project
  2. ZI2021090301/The second batch of national level vocational education teacher innovation team research project

Word Cloud

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