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Influence of processing variables and aluminum content on the microstructure and mechanical properties of cast Mg-Al alloys.

机译:工艺变量和铝含量对铸造Mg-Al合金的组织和力学性能的影响。

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摘要

Using statistical design of experiments, a variety of industrially relevant Mg-Al microstructures were developed and characterized by investigating casting variables such as; Al content, solidification rate, grain refinement, gas content, HIPing, and post-casting thermal treatment. The microstructures were microscopically characterized and the statistical results not only exemplified the power of experimental design but also generated a wealth of knowledge concerning individual factors and their interactions.; A significant contribution towards this goal was the measurement of cast Mg-Al solidification parameters via thermal analysis which were then related to the resultant microstructure. A statistical model was developed for the liquidus and solidus temperatures as a function of the solidification rate and Al content. The thermal analysis data was used in an existing solidification modeling code.; Statistical analysis of the experiments led to the determination of the variables that are significant with respect to tensile and impact testing. These included Al content, HIPing, solidification rate, grain refinement and hydrogen gas level in descending significance. Furthermore, differences in the test response as a result of testing conditions such as strain rate were highlighted. Additional experimentation was used to construct an outline for the development of strength and ductility in Mg-Al alloys.; The single most significant factor contributing to the variability in the tensile and impact data was the Al content. Increasing the Al content increased the strength while reducing the total amount of deformation possible, and reduced the amount of planar cleavage fracture. HIPing and solid solution heat treatment were shown to reduce the strength although a significant increase of elongation to failure is achievable after only 2.2 hours whereas further heat treatment failed to produce any significant additional increase. This exhibits a window of opportunity to reduce solution heat treat times while maintaining optimal properties.; The effect of strain rate appears to be secondary compared to the effect of porosity level on the die cast mechanical properties. This fact indicates that development of a reduced-porosity high volume die casting process would greatly expand the envelope within which to design Mg-Al components.
机译:使用实验的统计设计,开发了多种与工业相关的Mg-Al微结构,并通过研究铸造变量来表征其特征,例如:铝含量,凝固速率,晶粒细化,气体含量,HIPing和铸造后热处理。对微观结构进行了微观表征,统计结果不仅体现了实验设计的力量,而且还积累了有关各个因素及其相互作用的丰富知识。对该目标的重大贡献是通过热分析测量了铸造的Mg-Al凝固参数,然后将其与所得的微观结构相关联。建立了液相线和固相线温度随凝固速率和铝含量变化的统计模型。热分析数据被用于现有的凝固建模代码中。实验的统计分析导致确定对于拉伸和冲击测试而言很重要的变量。这些因素包括Al含量,HIPing,凝固速率,晶粒细化和氢气含量降序排列。此外,突出显示了由于诸如应变率等测试条件而导致的测试响应差异。额外的实验被用来构造镁铝合金强度和延展性发展的轮廓。导致拉伸和冲击数据变化的唯一最重要因素是铝含量。增加Al含量可提高强度,同时减少可能的总变形量,并减少平面解理断裂的量。尽管仅在2.2小时后,断裂伸长率可显着提高,但HIPing和固溶体热处理显示出降低的强度,而进一步的热处理则无法产生任何明显的额外增加。这显示了减少固溶热处理时间同时保持最佳性能的机会之窗。与孔隙率水平对压铸机械性能的影响相比,应变率的影响似乎是次要的。这一事实表明,减少孔隙率的大体积压铸工艺的发展将大大扩展设计Mg-Al组件的范围。

著录项

  • 作者

    Carlson, Blair Edward.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Materials Science.; Engineering Metallurgy.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 244 p.
  • 总页数 244
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;冶金工业;机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:48:58

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