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Effect of solute elements on the lattice parameters of magnesium.

机译:溶质元素对镁晶格参数的影响。

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摘要

Magnesium has limited formability at room temperature due to the hexagonal close-packed (hcp) structure with an axial (c/a) ratio of 1.6240 which provides only basal slip activation. Other hcp metals with different c/a ratios such as titanium have non-basal slip at room temperature. It can be postulated that changing the c/a can change the balance of deformation mechanisms and influence formability. Solutes are known to change the lattice parameters of a metal if in solid solution and hence affect deformation behavior. The objective of this project was to determine the effects of solute additions on the c/a ratio of magnesium and to attempt and assess the resulting deformation behavior.;Changes to the lattice parameters of magnesium with addition of solute elements, Ce, Li, In, and Zn, have been investigated. Binary solid solution alloys as well as multicomponent alloys were cast in permanent copper moulds and homogenized at temperatures between 375°C and 400°C. Annealed powder specimens were prepared and lattice parameters measured using a Philips PW1710 powder diffractometer with Cu-alpha radiation. The experimental X-ray diffraction (XRD) results were refined and analyzed by means of the Rietveld method while characterization of the alloys was performed with optical and scanning electron microscopy and electron probe microanalysis.;The effects of solutes on lattice parameters were explained on the basis of atom size differences and the change in electron overlap of magnesium due solute additions. It was found that addition of a lower valent solute such as Li caused a contraction of the lattice parameters and a resulting axial ratio decrease. Addition of Indium, however, resulted in a contraction of the lattice parameters, but an increase in the axial ratio due to its higher valency. Conversely, neither Zn nor Ce was found to have an effect on the axial ratio.;Characterization of the binary alloys revealed grain size can vary with the type and the amount of solute present in the pure Mg. Zinc was found decrease the grain size of Mg even at low solute content, while the Li and In concentrations had to be increased in order to achieve the same degree of grain refinement. Significant grain refinement was also observed with low Ce additions, mostly because of the presence of Ce-rich second phases.;Preliminary deformation tests were also carried out on three different alloys in order to see if changes to the axial ratio affected formability. Rolling and compression tests revealed that alloys with a finer as-cast microstructure resulted in more consistent flow curve shapes and smoother compressed surfaces.
机译:由于六方密堆积(hcp)结构的轴向(c / a)比为1.6240,因此镁在室温下的成形性有限,仅提供了基础滑移活化作用。其他具有不同c / a比的hcp金属(例如钛)在室温下具有非基滑。可以假设改变c / a可以改变变形机制的平衡并影响可成形性。已知溶质会改变金属的晶格参数(如果以固溶体形式存在),因此会影响变形行为。该项目的目的是确定溶质添加量对镁的c / a比的影响并尝试并评估由此产生的变形行为。;添加溶质元素Ce,Li,In改变镁的晶格参数和Zn,已经被研究。二元固溶体合金和多组分合金在永久性铜模中铸造,并在375°C至400°C的温度下均质化。制备退火的粉末样品,并使用带有Cu-α辐射的Philips PW1710粉末衍射仪测量晶格参数。利用Rietveld方法对实验X射线衍射(XRD)的结果进行了完善和分析,同时使用光学和扫描电子显微镜以及电子探针显微分析对合金进行了表征;在样品上解释了溶质对晶格参数的影响。原子尺寸差异的基础以及溶质添加对镁电子重叠的影响。发现添加低价溶质例如Li导致晶格参数的收缩并且导致轴向比降低。然而,铟的加入导致晶格参数的收缩,但是由于其更高的化合价而导致轴向比率的增加。相反,未发现Zn和Ce均对轴向比有影响。二元合金的表征表明晶粒尺寸会随纯Mg中溶质的类型和含量而变化。发现锌即使在低溶质含量下也能降低Mg的晶粒尺寸,而必须增加Li和In的浓度才能实现相同程度的晶粒细化。在添加少量铈的情况下,也观察到明显的晶粒细化,这主要是由于存在富铈的第二相。还对三种不同的合金进行了初步的变形试验,以观察轴向比的变化是否会影响成形性。滚动和压缩测试表明,具有更好的铸态组织的合金可产生更一致的流动曲线形状和更光滑的压缩表面。

著录项

  • 作者

    Becerra Correa, Ana Maria.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Engineering Metallurgy.
  • 学位 M.Eng.
  • 年度 2007
  • 页码 110 p.
  • 总页数 110
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金工业;
  • 关键词

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