期刊文献+

Rapid solidification of acoustically levitated Al-Cu-Si eutectic alloy under laser irradiation 被引量:4

Rapid solidification of acoustically levitated Al-Cu-Si eutectic alloy under laser irradiation
原文传递
导出
摘要 Al-27%Cu-5.3%Si ternary eutectic alloy was melted using a YAG laser and then solidified while being acoustically levitated. A maximum undercooling to 195 K (0.24 TL) was achieved with a cooling rate of 76 K/s. The solidification microstructure was composed of (Al+θ+Si) ternary eutectics and (Al+θ) pseudobinary eutectics. During acoustic levitation, the (Al+θ+Si) ternary eutectics are refined and the (Al+θ) pseudobinary eutectics have morphological diversity. On the surface of the alloys, surface oscillations and acoustic streaming promote the nucleation of the three eutectic phases and expedite the cooling process. This results in the refinement of the ternary eutectic microstructure. During experiments, the reflector decreases with increasing alloy temperature, and the levitation distance always exceeds the resonant distance. Because of the acoustic radiation pressure, the melted alloy was flattened, and deformation increases with increasing sound pressure. The maximum aspect ratio achieved was 6.64, corresponding to a sound pressure of 1.8×104 Pa. A1-27%Cu-5.3%Si ternary eutectic alloy was melted using a YAG laser and then solidified while being acoustically levitated. A maximum undercooling to 195 K (0.24 TL) was achieved with a cooling rate of 76 K/s. The solidification microstructure was composed of (AI+ Ф+Si) ternary eutectics and (AI+Ф) pseudobinary eutectics. During acoustic levitation, the (AI+Ф+Si) ternary eutectics are refined and the (AI+Ф) pseudobinary eutectics have morphological diversity. On the surface of the alloys, surface oscillations and acoustic streaming promote the nucleation of the three eutectic phases and expedite the cooling process. This results in the refinement of the ternary eutectic microstrncture. During experiments, the reflector decreases with increasing alloy temperature, and the levitation distance always exceeds the resonant distance. Because of the acoustic radiation pressure, the melted alloy was flattened, and deformation increases with increasing sound pressure. The maximum aspect ratio achieved was 6.64, corresponding to a sound pressure of 1.8×10^4 Pa.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2011年第9期912-918,共7页
基金 supported by the National Natural Science Foundation of China (50971105)
关键词 共晶合金 快速凝固 磁悬浮 AI 激光照射 宾夕法尼亚州 合金熔化 acoustic levitation, laser irradiation, rapid solidification, ternary eutectic, surface nucleation
  • 相关文献

参考文献3

二级参考文献30

  • 1梅策香,阮莹,代富平,魏炳波.深过冷Ag-Cu-Ge三元共晶合金的相组成与凝固特征[J].物理学报,2007,56(2):988-993. 被引量:9
  • 2Xie W J and Wei B 2001 Chin. Phys. Lett. 18 68.
  • 3Ohsaka K, Trinh E H and Glicksman M E 1990 J. Cryst. Growth 106 191.
  • 4Lee C P, Anilkumar A V and Wang T G 1991 Phys. Fluids A 3 2497.
  • 5Trinh E H and Ohsaka K 1995 Inter. J. Thermophysies 16 545.
  • 6Ohsaka K and Trinh E H 2000 Phys. Rev. Lett. 84 1700.
  • 7Lu Y J, Xie W J and Wei B 2002 Chin. Phys. Left. 19 1543.
  • 8Santesson S and Nilsson S 2004 Anal. Bioanal. Chem. 378 1704.
  • 9Wiklund M, Tirri M, Hanninen P and Hertz H M 2004 J. Appl. Phys. 96 1242.
  • 10Xie W J et al 2006 Appl. Phys. Lett. 89 214102.

共引文献10

同被引文献71

引证文献4

二级引证文献22

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部