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Particle stimulated nucleation of recrystallization in two-phase aluminum - magnesium-silicide alloys.

机译:两相铝-硅化镁合金中的颗粒激发的重结晶成核。

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摘要

A series of Al-Mg{dollar}sb2{dollar}Si alloys was produced with the original intention of studying particle stimulated recrystallization for grain size control. Dispersions with independent variation of particle size and spacing were required for the study. A finite difference diffusion model was developed to generate the appropriate cooling curves for their production. From metallographic sections, 2-D particle size and distribution were measured by an image analyzer. To characterize the dispersions in more detail, all particles were approximated as spheroids. From the measured 2-D particle parameters, 3-D particle size and distribution were calculated by the Saltykov/DeHoff analysis. Log-normal distribution was found. The 90 percent cold rolled and annealed (350{dollar}spcirc{dollar}C) conditions were studied using measurements of hardness, electrical conductivity, optical metallography, SEM and TEM. The technique of convergent beam electron diffraction was used to obtain Kikuchi patterns, which were digitized and analyzed to obtain crystallographic information. TEM results of rolling plane samples showed gross heterogeneity in the misorientation development around particles. These were attributed to the interaction of shear bands and particles. The shear bands were clearly revealed by transverse section TEM foils prepared with a newly developed technique. They appear to form in single-phase alloy as well, but seem to be intensified by the presence of particles. A hypothesis was put forward to explain the interaction of shear bands with particle deformation zones which overlap. Particle stimulated nucleation of recrystallization (PSN) also appears to be operative to some extent. Extra solute inhibits dynamic recovery. Particle pinning slows down the recrystallization kinetics. The findings of this study raise some questions on the currently accepted models of recrystallization in two-phase alloys. With the assumption of macroscopically homogeneous strain, these models predict the conditions for PSN or recrystallized grain size based on the imposed strain and particle size distribution. The assumption of macroscopically homogeneous strain is no longer valid for alloys which show strain localization in the form of shear bands. It appears that shear banding is a more common phenomenon than generally thought. The role of shear banding on the microstructural development and the resultant mechanical properties is worth further studying.
机译:产生了一系列Al-Mg {sb2 {dollar} Si合金,其最初目的是研究颗粒激发的再结晶以控制晶粒尺寸。该研究需要具有独立变化的粒度和间距的分散体。建立了有限差分扩散模型,以生成适合其生产的冷却曲线。从金相切片,通过图像分析仪测量2-D粒径和分布。为了更详细地表征分散体,将所有颗粒近似为球体。根据测得的2-D粒子参数,通过Saltykov / DeHoff分析计算出3-D粒径和分布。发现对数正态分布。使用硬度,电导率,光学金相,SEM和TEM的测量方法研究了90%的冷轧和退火(350 {spcirc {dollar} C)条件。使用会聚束电子衍射技术获得菊池图案,将其数字化并进行分析以获得晶体学信息。滚动平面样品的TEM结果表明,颗粒周围的取向不良发展存在明显的异质性。这些归因于剪切带和颗粒的相互作用。用新开发的技术制备的横截面TEM箔清楚地显示了剪切带。它们似乎也在单相合金中形成,但似乎由于颗粒的存在而加剧。提出了一个假设来解释剪切带与重叠的颗粒变形区的相互作用。颗粒激发的重结晶成核(PSN)在某种程度上也似乎是有效的。额外的溶质会抑制动态恢复。粒子钉扎会减慢重结晶动力学。这项研究的发现对目前公认的两相合金中的再结晶模型提出了一些疑问。在宏观均匀应变的假设下,这些模型基于施加的应变和粒度分布预测了PSN或再结晶晶粒尺寸的条件。宏观均匀应变的假设对于以剪切带形式显示应变局部化的合金不再有效。似乎剪切带是比普遍认为的更普遍的现象。剪切带对微结构发展和所得机械性能的作用值得进一步研究。

著录项

  • 作者

    Liu, John.;

  • 作者单位

    Drexel University.;

  • 授予单位 Drexel University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 253 p.
  • 总页数 253
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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