Effects of Superheating Treatment on the Microstructure, Tensile and Thermal Conductivity Properties of Fe-Bearing Al-10Si-Mg Casting Alloy

  • Jang, Jin-Hyeok
  • Kang, Tae-Hoon
  • Euh, Kwang-jun
  • Cho, Young-Hee
  • Lee, Kee-Ahn
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초록

In this study, we designed and manufactured a new Fe-bearing Al-10Si-Mg casting alloy (F alloy) and investigated its microstructure, mechanical properties, and thermal conductivity. Two types of Fe-bearing Al-10Si-Mg alloys were used: the Conventional-F alloy, injected at 720 degrees C and cooled by water quenching, and the Superheated-F alloy, heated to 820 degrees C and maintained at that temperature for 1 hour. Subsequently, it underwent a degassing process at 720 degrees C before being cooled by water quenching. Both the Conventional-F alloy and the Superheated-F alloy exhibited dendritic microstructures and Fe-intermetallic compounds. The Secondary Dendrite Arm Spacing (SDAS) of the Conventional-F alloy measured 32.4 mu m, whereas the Superheated-F alloy measured 28.6 mu m. Additionally, the average eutectic Si sizes were 10.3 mu m for the Conventional-F alloy and 7.7 mu m for the Superheated-F alloy. Fe-rich IMCs were observed in the eutectic region, with their size decreasing due to the superheating treatment. Tensile tests at room temperature were conducted at a strain rate of 10(-3)/s. The Conventional-F alloy exhibited a yield strength (YS) of 93.4 MPa, ultimate tensile strength (UTS) of 183 MPa, and an elongation (El.) of 6.4%. Conversely, the SuperheatedF alloy displayed a YS of 115.4 MPa, UTS of 218.2 MPa, and an El. of 5.1%. The mechanical properties notably improved with the superheating treatment. Regarding thermal conductivity, the Conventional-F alloy exhibited 114.9 W/m<middle dot>K, while the Superheated-F alloy displayed 153.7 W/m<middle dot>K. This represents a roughly 14% increase compared to the thermal conductivity of the commercial Al-10Si-Mg material (Silafont36: 135.1 W/m<middle dot>K). The effects of the Superheating Treatment on microstructural characteristics, deformation behavior, and thermal conductivity of the Fe-bearing Al-10Si-Mg casting alloys were discussed.

키워드

Al-10Si-MgFe additionSuperheatingMicrostructureTensile PropertyThermal conductivityAL-SI-CUMECHANICAL-PROPERTIESRICH INTERMETALLICSHEAT-TREATMENTIRON-INTERMETALLICSEUTECTIC SIALUMINUMSOLIDIFICATIONADDITIONSEVOLUTION
제목
Effects of Superheating Treatment on the Microstructure, Tensile and Thermal Conductivity Properties of Fe-Bearing Al-10Si-Mg Casting Alloy
저자
Jang, Jin-HyeokKang, Tae-HoonEuh, Kwang-junCho, Young-HeeLee, Kee-Ahn
DOI
10.3365/KJMM.2024.62.5.402
발행일
2024-05
유형
Article
저널명
대한금속·재료학회지
62
5
페이지
402 ~ 410