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Influence of Pulsed Beams of Deuterium Ions and Deuterium Plasma on the Aluminum Alloy of Al-Mg-Li System

机译:氘离子和氘等离子体脉冲梁对Al-Mg-Li系统铝合金的影响

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摘要

The damage and structural state of the surface layer of Al- Li - Mg samples composed of Al-5% Mg-2% Li (wt %) under pulsed action of power streams of high-temperature deuterium plasma and high-energy deuterium ions in the Plasma Focus (PF) device have been investigated. The radiation power density was q ~ 10~6W/cm~2; the pulse duration was 50-100 ns. Pulsed thermal heating and rapid cooling is established to lead to the melting and solidification of a thin surface layer of the alloy for several tens of nanoseconds. At the same time, in the superheated surface layer of the alloy, microcavities of a spherical shape are formed which is associated with intense evaporation of lithium into micropores within the heated layer. Thermal stresses caused by abrupt heating, melting, and cooling of a thin surface layer of metal result in formation of microcracks in the near-surface zone of the samples. The evaporation by the power electron beam of the elements of the anode material of the PF device (copper and tungsten) and their subsequent deposition onto the irradiated surface of the investigated samples in the form of droplets of submicron size are noted. It is shown that the thermal and radiation-stimulated processes generated in the alloy underthc action of pulsed energy fluxes in the implemented irradiation regime lead to the redistribution of elements in the surface layer of the aluminum solution, contributing to an increase in magnesium content and the formation of magnesium oxide on the surface.
机译:在高温氘等离子体电流和高能量氘离子的脉冲作用下,由Al-5%Mg-2%Li(WT%)组成的Al-5%Mg-2%Li(WT%)的表面层的损伤和结构状态已经研究了等离子体焦点(PF)装置。辐射功率密度为Q〜10〜6W / cm〜2;脉冲持续时间为50-100ns。建立脉冲热加热和快速冷却,以导致合金的薄表面层的熔化和凝固几十纳秒。同时,在合金的过热表面层中,形成球形的微腔,其与锂在加热层内的微孔中的强烈蒸发相关。由突然加热,熔化和薄表面层的冷却引起的热应力导致样品的近表面区中的微裂纹形成。注意到PF器件(铜和钨)的阳极材料元件的电力电子束的蒸发及其随后沉积在亚微米尺寸的液滴的液滴形式的所研究样品的辐照表面上。结果表明,在实施的照射制度中脉冲能量通量的合金中产生的热和辐射刺激的过程导致铝溶液表面层中的元素的再分布,有助于增加镁含量和在表面上形成氧化镁。

著录项

  • 来源
    《Inorganic materials: applied research》 |2019年第3期|503-511|共9页
  • 作者单位

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    National Research University High School of Economics Moscow 101000 Russia;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia National Research University High School of Economics Moscow 101000 Russia;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    Scientific Research Institute of Advanced Materials and Technologies Moscow 115054 Russia;

    Institute of Plasma Physics and Laser Microfusion Warsaw 01-497 Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Al-Mg-Li alloy; plasma focus; dense deuterium plasma; fast deuterium ion beam; surface damage; surface modification;

    机译:Al-Mg-Li合金;血浆焦点;致密氘等离子体;快速氘代离子梁;表面损坏;表面改性;

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