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Fundamental research regarding the ultrasonic stirring effects on the microstructure of A356 castings.

机译:超声搅拌对A356铸件组织的影响的基础研究。

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摘要

Ultrasonic stirring treatment (UST) of molten metal has significant effects on the solidification microstructure of A356 alloy, which includes grain structure, distribution of inclusions, refinement of secondary phases, etc. The primary causes are due to ultrasonic cavitation, acoustic streaming and propagation of ultrasound waves in media. However, the mechanism of how those effects happen are not fully understood and quantified.;In this research, molten A356 alloy was treated with high power ultrasound at a frequency of 18 kHz, and then at relatively high superheat, the melt was cast into a permanent metal mold which complies with ASTM B108-02. The UST processing system was custom built to perform the present UST study.;The relatively high superheat condition is similar to the one used in the standard foundry practice, which will assist in the scale up of practical application of ultrasonic stirring technology. The selected parameters for the ultrasonic stirring technology (UST) were determined by using an UST modeling software tool that was recently developed and validated. The UST modeling software tool is capable of modeling and simulating the acoustic streaming and ultrasonic cavitation as well as the microstructure evolution during the solidification of cast alloys.;Since the UST was preceded in the molten alloy, no dendrites are growing during the UST processing. Besides, more energy is required for homogeneous nucleation to occur. Consequently, the dominant mechanism of nucleation in this research is heterogeneous nucleation. The microstructure and mechanical properties of the A356 alloy processed with and without UST were analyzed and compared in detail in this study. It was demonstrated that the ultrasonically-stirred A356 alloy shows superior microstructure characteristics with very low micro-porosity levels and improved tensile properties when compared with the standard A356 alloy.
机译:熔融金属的超声搅拌处理(UST)对A356合金的凝固组织具有重大影响,包括晶粒结构,夹杂物分布,第二相细化等。主要原因是超声空化,声流和扩散。媒体中的超声波。但是,这些影响的发生机理尚不完全清楚和量化。;在这项研究中,对熔融的A356合金进行了18kHz的高功率超声处理,然后在相对较高的过热度下将熔体浇铸成符合ASTM B108-02的永久金属模具。 UST处理系统是为执行目前的UST研究而定制设计的;较高的过热条件类似于标准铸造实践中使用的条件,这将有助于扩大超声搅拌技术的实际应用。使用最近开发和验证的UST建模软件工具确定了超声搅拌技术(UST)的选定参数。 UST建模软件工具能够对铸造合金凝固过程中的声流和超声空化以及微观结构演变进行建模和仿真。由于UST早于熔融合金,因此在UST处理过程中不会出现枝晶生长。此外,需要更多的能量来发生均匀成核。因此,本研究中成核的主要机理是异质成核。在这项研究中,分析和比较了采用和未采用UST的A356合金的显微组织和力学性能。结果表明,与标准A356合金相比,超声搅拌的A356合金具有优异的微观结构特征,具有极低的微孔率水平和改善的拉伸性能。

著录项

  • 作者

    Jia, Shian.;

  • 作者单位

    The University of Alabama.;

  • 授予单位 The University of Alabama.;
  • 学科 Engineering Materials Science.
  • 学位 M.S.
  • 年度 2013
  • 页码 58 p.
  • 总页数 58
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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