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Correlation between microstructures and oxidation resistance in zirconium-niobium-titanium alloys.

机译:锆铌钛合金的微观结构与抗氧化性之间的关系。

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摘要

Oxidation behavior of Zr-10Nb-10Ti and Zr-10Nb-20Ti (compositions are in atomic percent) alloys has been investigated in air between 300 and 700°C. Higher Ti content in the alloy enhances the oxidation resistance. The calculated isotherms by Pandat(TM) [1,2] show that 20Ti enters a 3 phase (alphaZr-HCP, betaNb-BCC, and betaZr-BCC) region at 500°C while 10Ti alloy continues to be a 2 phase (alphaZr and betaNb) alloy until 550°C and then enters the 3 phase (alphaZr, betaNb, and betaZr) region. Both alloys have a single phase beta Zr solid solution at 700°C which is detrimental for the oxidation resistance. beta Nb-phase greatly contributes to the oxidation resistance in these two alloys. The common oxidation products have been identified as TiO2, ZrO2, and Nb 2O5. Formation of substoichimoetric structures has been observed at lower temperatures. Both alloys suffer from pest oxidation at temperatures between 500 and 550°C, respectively (20Ti and 10Ti), up to 700°C. XRD indicates strong peaks for monoclinic structure of ZrO2 at temperatures above 600°C. Vickers micro-hardness measurements for the as-cast alloys and Rockwell Hardness measurements were conducted on the as-cast and after experimental exposure alloys, in order to obtain some sense of the mechanical properties of the alloys. Increased hardness is related to the formation of beta Zr phase in the microstructure.
机译:Zr-10Nb-10Ti和Zr-10Nb-20Ti(以原子百分比计)合金的氧化行为已在300至700°C的空气中进行了研究。合金中较高的Ti含量可增强抗氧化性。 Pandat™[1,2]计算的等温线表明,20Ti在500°C进入3相(alphaZr-HCP,betaNb-BCC和betaZr-BCC)区域,而10Ti合金继续为2相(alphaZr和βNb)合金直到550°C,然后进入三相区(alphaZr,betaNb和betaZr)。两种合金都在700°C下具有单相βZr固溶体,这对抗氧化性有害。 βNb相极大地促进了这两种合金的抗氧化性。常见的氧化产物已被鉴定为TiO2,ZrO2和Nb 2O5。在较低温度下观察到亚化学计量结构的形成。两种合金都分别在500至550°C(20Ti和10Ti)的温度(最高700°C)下遭受有害生物氧化。 XRD表示在600°C以上的温度下ZrO2单斜晶结构的强峰。为了对合金的机械性能有所了解,对铸态合金和实验暴露合金进行了维氏显微硬度测量和洛氏硬度测量。硬度增加与微观结构中βZr相的形成有关。

著录项

  • 作者

    Parga, Clemente Jose.;

  • 作者单位

    The University of Texas at El Paso.;

  • 授予单位 The University of Texas at El Paso.;
  • 学科 Engineering Metallurgy.
  • 学位 M.S.
  • 年度 2009
  • 页码 78 p.
  • 总页数 78
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 语言学;
  • 关键词

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