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A possible thermodynamic mechanism of craters formation on metal surfaces caused by intense pulsed ion beams

机译:强脉冲离子束在金属表面形成弹坑的可能的热力学机理

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It was found that some craters appeared on the irradiated surfaces that have been melted under intense pulsed ion beam (IPIB) irradiation. These craters with various sizes and morphologies limit the utilization of IPIB as a novel means of surface processing in some cases. In this work we examined surfaces of 45(#) steel and Ni(3)AI samples irradiated with IPIB at different beam parameters with scanning electronic microscopy (SEM) and energy dispersive spectrometry (EDS), and found that the craters basically can be sorted into two groups. The first kind of craters directly relates to droplet from the ion source, and the other kind of craters is due to the non-equilibrium process of ultra fast quenching. According to the dynamic theory of interaction between ions and materials and the thermodynamic theory about defects, a possible forming mechanisms for the second kind of craters is proposed in this paper. The vacancy densities produced in IPIB irradiation at various pulse parameters are calculated. Moreover, the process of cratering is analyzed in detail, and the variety of the crater morphologies is discussed. (c) 2004 Elsevier B.V. All rights reserved.
机译:发现在强烈的脉冲离子束(IPIB)照射下已经熔化的被照射表面上出现了一些凹坑。在某些情况下,这些具有各种尺寸和形态的弹坑限制了IPIB作为表面处理的一种新颖手段的利用。在这项工作中,我们用扫描电子显微镜(SEM)和能量色散谱(EDS)检查了在不同束参数下用IPIB辐照的45(#)钢和Ni(3)Al样品的表面,发现基本上可以对陨石坑进行分类分为两组第一种陷坑与离子源中的液滴直接相关,另一种陷坑是由于超快速淬灭的非平衡过程所致。根据离子与材料相互作用的动力学理论和缺陷的热力学理论,提出了第二种弹坑的可能形成机理。计算在各种脉冲参数下在IPIB辐照中产生的空位密度。此外,详细分析了缩孔过程,并讨论了缩孔形态的变化。 (c)2004 Elsevier B.V.保留所有权利。

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