4.6 Article

Laser Shock Peening of SiCp/2009Al Composites: Microstructural Evolution, Residual Stress and Fatigue Behavior

期刊

MATERIALS
卷 14, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/ma14051082

关键词

discontinuously reinforced metal matrix composite; fatigue behavior; laser shock peening; microstructural evolution; residual stress

资金

  1. National Natural Science Foundation of China [51875542]
  2. Key Laboratory Funding for Equipment Pre-research [JZX7Y201911SY008601]

向作者/读者索取更多资源

In this study, laser shock peening (LSP) was used to improve the microhardness and introduce compressive residual stresses in SiC particle reinforced aluminum alloy. The fatigue lives of the specimens were significantly increased after LSP treatment, demonstrating the potential for enhancing the performance of metal matrix composites.
SiC particle reinforced aluminum alloy has a wide application in the aerospace industries. In this study, laser shock peening (LSP), an advanced surface modification technique, was employed for SiCp/2009Al composite to reveal its microstructure, microhardness and residual stress evolution. After peening, high densities of dislocations were induced in the aluminum substrate, and stacking faults were introduced into the SiC particle. The microhardness was increased from 155-170 HV to 170-185 HV, with an affected depth of more than 1.5 mm. Compressive residual stresses of more than 200 MPa were introduced. The three-point bending fatigue of the base material, laser peened and milled after laser peened specimens with artificial crack notch fabricated by a femtosecond laser was investigated. The average fatigue lives of laser peened and milled after laser peened specimens were increased by up to 10.60 and 2.66 times, compared with the base material. This combined fundamental and application-based research seeks to comprehensively explore the applicability of LSP on metal matrix composite.

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