Al-2%Si合金(7)共晶凝固過程(mt苍 力学特性G及(rTSr(7)影響

Translated title of the contribution: Influence of Sr on mechanical properties of Al-2%Si alloys during eutectic solidification

Rio Hirano*, Shogo Ozaki, Yoshihiro Nagata, Akira Matsushita, Toshio Sakamoto, Kanta Orio, Yasuhiko Okimura, Toshimitsu Okane, Muhammad Khairi Faiz, Makoto Yoshida

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Al-Si alloys have lower hot tearing susceptibility (HTS) than other aluminum alloys. However, hot tearing occurs under certain casting conditions. It is known that the Sr addition reduces the HTS because of the enhancement of crack-healing. Meanwhile, an influence of Sr addition on the tensile strength, ductility, and viscous properties during eutectic solidification has not yet been clarified. In this study, we investigated the influence of Sr addition on these properties during eutectic solidification. The tensile tests during eutectic solidification were conducted for Al- 2Si and Al-2Si-Sr alloys. The results show that the Sr addition did not affect the viscous properties. On the other hand, the tensile strength and elongation during the latter half of eutectic solidification increased by Sr addition. Consequently, the HTS reduction by Sr addition should be attributed to the improvement of ductility. It was suggested that the increase in the elongation by Sr addition should result from the decrease in the tensile stress, which affects the opening and propagation of hot tearing, due to the increase in porosity near the crack.

Translated title of the contributionInfluence of Sr on mechanical properties of Al-2%Si alloys during eutectic solidification
Original languageChinese (Traditional)
Pages (from-to)447-454
Number of pages8
JournalKeikinzoku/Journal of Japan Institute of Light Metals
Volume73
Issue number9
DOIs
Publication statusPublished - 2023

Keywords

  • aluminum alloy
  • eutectic
  • hot tearing
  • mechanical property
  • strontium

ASJC Scopus subject areas

  • Mechanics of Materials
  • Mechanical Engineering
  • Metals and Alloys
  • Materials Chemistry

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