Material modification by high-intense pulsed ion beams

G. Remnev, V. Tarbokov, S. Pavlov
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引用次数: 2

Abstract

The review is devoted to the use of powerful submicrosecond ion beams for the synthesis and modification of material properties. Powerful ion beams, originally developed for the problems of inertial thermonuclear fusion, have been increasingly used over the past 30 years as a powerful pulsed heating source providing ample opportunities for modifying the surface layer of materials. By varying the key parameters of the beams, such as the composition (type of ions), the duration of the accelerating pulse (10 ns – 1 μs), the kinetic energy of the ions (0.1 – 1 MeV), the energy density transmitted by the beam to the target surface per pulse (0.1 – 50 J/cm2), the main areas of application of high-power ion beams in materials science were determined: modification of the surface layer by ultrafast quenching, melting and ultrafast recrystallization with the formation of micro- and nanostructures, pulsed implantation of ions accompanied by energetic action, deposition of thin films and synthesis of nanosized powders from ablative plasma.
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高强度脉冲离子束对材料的改性
本文综述了利用强大的亚微秒离子束合成和修饰材料性能的研究进展。强大的离子束最初是为解决惯性热核融合问题而开发的,在过去的30年里,它作为一种强大的脉冲热源得到了越来越多的应用,为改变材料的表层提供了充分的机会。通过改变高能离子束的组成(离子类型)、加速脉冲持续时间(10 ns - 1 μs)、离子动能(0.1 - 1 MeV)、每脉冲向目标表面传输的能量密度(0.1 - 50 J/cm2)等关键参数,确定了高能离子束在材料科学中的主要应用领域:通过超快淬火、熔融和超快再结晶对表层进行改性,形成微纳米结构,伴随高能作用的离子脉冲注入,薄膜沉积和烧蚀等离子体合成纳米级粉末。
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