Acta Metallurgica Sinica (English Letters) ›› 2024, Vol. 37 ›› Issue (2): 266-282.DOI: 10.1007/s40195-023-01628-2

Special Issue: 2024年增材制造专辑

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Effect of Direct Aging on Corrosion Behavior of AlSi10Mg Alloy Fabricated by Laser Powder Bed Fusion

Zhen Zhang1,2, Zhanyong Zhao1(), Xiaofeng Li1, Beibei Wang1, Peikang Bai1,3()   

  1. 1Shanxi Key Laboratory of Controlled Metal Solidification and Precision Manufacturing, School of Materials Science and Engineering, North University of China, Taiyuan, 030051, China
    2Technical Center, Taiyuan Iron and Steel (Group) Co., Ltd, Taiyuan, 030003, China
    3School of Materials Science and Engineering, Taiyuan University of Science and Technology, Taiyuan, 030024, China
  • Received:2023-08-28 Revised:2023-09-19 Accepted:2023-09-27 Online:2023-11-24 Published:2024-02-27
  • Contact: Zhanyong Zhao, Peikang Bai

Abstract:

Effect of direct aging of 170°C on corrosion behavior of laser powder bed fused AlSi10Mg (LPBF-AlSi10Mg) was studied by microstructure analysis, electrochemical analysis and X-ray photoelectron spectrometer. The results show that direct aging of 170 °C has little effect on melt pool and Si cellular structure, but promotes the precipitation of nano-Si particles and releases the residual stress. With increasing aging time from 0 to 4 h to 24 h, the corrosion property of the LPBF-AlSi10Mg is deteriorated, which is evidenced by increased corrosion current density and decreased pitting potential and polarization resistance. With increasing the aging time, the thickness of the oxide film formed on surface of the LPBF-AlSi10Mg increases. The Si content of the oxide film of the sample aging for 4 h is the lowest, 9.42 at.%, and it is the highest, 18.62 at.%, for the sample aging for 24 h. The electrochemical noise analysis reveals that the middle-frequency contribution of the Hilbert spectrum is responsible for the deteriorated corrosion performance, which corresponds to metastable pitting initiated by nano-Si particles.

Key words: Laser powder bed fusion, AlSi10Mg, Direct aging, Corrosion