首页> 外文期刊>Atomic Energy >GAS POROSITY FORMATION IN THE VANADIUM ALLOYS V-W, V-Ta, V-Zr DURING HELIUM-ATOM IRRADIATION AT 650℃
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GAS POROSITY FORMATION IN THE VANADIUM ALLOYS V-W, V-Ta, V-Zr DURING HELIUM-ATOM IRRADIATION AT 650℃

机译:650℃氦原子辐照过程中钒合金V-W,V-Ta,V-Zr的气孔形成

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摘要

Transmission electron microscopy is used to study the influence of alloying vanadium with tungsten, tantalum, and zirconium on the natural mechanisms of helium porosity formation and gas swelling during 40 keV He~+ ion irradiation to dose 5·10~(20) m~(-2) at 650℃. The formation of a bubble micro structure and gas swelling of vanadium alloys depends on the chemical and impurity composition of the irradiated materials. It was determined that in vanadium large facetted helium pores form and high gas swelling is observed, and in addition the swelling is significantly greater in high-purity vanadium. Alloying with tungsten increases swelling while tantalum has virtually no effect and zirconium and its analog titanium greatly reduce swelling. A definite correlation is observed between swelling and the number of electrons participating in the interatomic bond in alloys.
机译:用透射电子显微镜研究了钒与钨,钽和锆合金化对40keV He〜+离子辐照剂量5·10〜(20)m〜()期间氦气孔形成和气体溶胀的自然机理的影响。 -2)在650℃。钒合金的气泡微观结构的形成和气体膨胀取决于被辐照材料的化学和杂质组成。已经确定在钒中形成大的多面氦气孔并观察到高气体膨胀,此外,高纯度钒中的膨胀明显更大。与钨的合金化会增加溶胀,而钽几乎没有作用,而锆及其类似钛会大大减少溶胀。观察到膨胀与合金中参与原子间键的电子数量之间存在明确的相关性。

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  • 来源
    《Atomic Energy》 |2014年第1期|35-41|共7页
  • 作者单位

    National Nuclear Research University - Moscow Engineering-Physics Institute (NIYaU MIFI), Moscow;

    National Nuclear Research University - Moscow Engineering-Physics Institute (NIYaU MIFI), Moscow;

    National Nuclear Research University - Moscow Engineering-Physics Institute (NIYaU MIFI), Moscow;

    National Nuclear Research University - Moscow Engineering-Physics Institute (NIYaU MIFI), Moscow;

    National Nuclear Research University - Moscow Engineering-Physics Institute (NIYaU MIFI), Moscow;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:39:18

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