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April 14, 2026Advanced Engineering Materials0 citations

Effects of Laser Scanning Speed on Sc‐Modified AlSi7Mg Alloy Fabricated by Selective Laser Melting: Microstructure and Nanomechanical Properties

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MWMengdi WangJGJianbao GaoKDKexin Ding

Key Points

  • This study aims to understand how laser scanning speed affects the microstructure and mechanical properties of Sc-modified AlSi7Mg alloy.
  • Utilized selective laser melting (SLM) for alloy fabrication
  • Varying laser scanning speeds during production
  • Analyzed forming quality, microstructure, and nanomechanical properties
  • At 1400 mm/s, the alloy achieved 98.99% relative density
  • Surface roughness decreased to Ra = 5.62 μm
  • Average grain size reached optimum at 4.82 μm
  • Nanohardness measured at 2.04 GPa, indicating strong mechanical performance

Abstract

Selective laser melting (SLM) was used to fabricate Sc‐modified AlSi7Mg alloy. This study investigated the effects of laser scanning speed on forming quality, microstructure, and nanomechanical properties of the new AlSi7Mg0.526Sc alloy. The experimental results indicated that as the scanning speed increased, the relative density and solid solution strengthening effect initially increased and then slightly decreased, while the surface roughness decreased, and the grain size first decreased and then increased. At a scanning speed of 1400 mm/s, the SLM‐ed AlSi7Mg0.526Sc sample demonstrated the highest relative density (98.99%), the relatively lowest surface roughness (Ra = 5.62 μm), the finest average grain size (4.82 μm), and the optimum nanohardness (2.04 GPa). These superior properties were attributed to the high forming quality, fine microstructure, and effective solid solution strengthening.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69ddd9e1e195c95cdefd74a7https://doi.org/10.1002/adem.202502158
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