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Investigation into the effect of solid solution chemistry on lattice parameters and microstructural properties of βeta -Ti alloys.

机译:研究固溶化学对βeta-Ti合金的晶格参数和显微组织性能的影响。

摘要

This research aimed at investigating the changes in lattice parameters with increase in solute concentration. A vacuum arc furnace with a tungsten electrode was used for alloying purposes. The alloys were then annealed at 1000oC for 28 hours followed by quenching in ice-water. Five Ti-Mn and five Ti-Fe alloys were prepared within their solid solution range. In addition, commercially pure titanium was doped with up to 2.7%O with the aim of evaluating the effect of this on lattice parameters. Optical microscopy was used to study microstructures and XRD was utilized for lattice parameter determination.udLattice constants decrease with increase in solute concentration confirming the expected result since the solute elements are smaller than titanium. Grain size also decreased with increase in solute content. Hardness tests made confirmed an increase in hardness with solute concentration. This is caused by lattice straining as beta stabilizer concentration is increased.
机译:这项研究旨在调查随溶质浓度增加的晶格参数变化。具有钨电极的真空电弧炉用于合金化目的。然后将合金在1000oC退火28小时,然后在冰水中淬火。在固溶范围内制备了五种Ti-Mn和五种Ti-Fe合金。另外,商业纯钛掺入了高达2.7%的O,目的是评估其对晶格参数的影响。光学显微镜用于研究微观结构,X射线衍射用于晶格参数测定。 ud随着溶质浓度的增加,晶格常数减小,这证实了预期的结果,因为溶质元素小于钛。晶粒尺寸也随着溶质含量的增加而减小。进行的硬度测试证实硬度随溶质浓度的增加而增加。这是由于β稳定剂浓度增加时晶格应变引起的。

著录项

  • 作者

    Baloyi Rodwell;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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