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Characterization of high-current pulsed electron beam interaction with AISI 1045 steel and the microstructure evolution

机译:与AISI 1045钢的高电流脉冲电子束相互作用的表征及微观结构演化

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In this paper, the process of pulsed electron beam interaction with AISI 1045 steel is the main focus under investigation. The electron beam is generated by "pseudo-spark" discharge device and characterized by high current (hundreds of amperes to thousands of amperes), short pulse duration (hundreds of nanoseconds to thousands of nanoseconds), high frequency (hundreds of Hz to thousands of Hz) and self-focused beam diameter (typically 0.5-5 mm), which are more favorable for metal surface treatment compared with the conventional thermal-emission electron beam diode. In this work, both the microstructure evolution of the metal target and the temporal evolution of the target surface plasma and vapor are investigated by a diversity of diagnostic methods. The influence of the plasma phase on the formation of surface irregularities are analyzed and discussed. The experimental setup is introduced, surface microstructure and chemical composition of AISI 1045 steel pre and post pseudo spark electron beam treatment are investigated by using scanning electron microscope (SEM) and Energy Dispersive X-Ray Spectroscopy (EDS, also called EDX). The mechanisms of the metal surface profile evolution are proposed based on the experimental results. It is demonstrated that the pseudo-spark based electron beam parameters can be optimized to decrease the surface irregularities within the proper pulse irradiation time and plasma density range.
机译:在本文中,与AISI 1045钢的脉冲电子束相互作用的过程是在调查中的主要重点。电子束由“伪火花”放电装置产生,其特征在于高电流(数百位达到数千位的倍数),短脉冲持续时间(数百名纳秒到数千纳秒),高频(数百Hz到数千个Hz)和自聚焦光束直径(通常为0.5毫米),与传统的热发射电子束二极管相比,对金属表面处理更有利。在这项工作中,通过诊断方法的多样性研究了金属靶的微观结构和靶表面等离子体和蒸汽的时间演化。分析并讨论了等离子体相对地形成表面不规则性的影响。介绍了实验装置,通过使用扫描电子显微镜(SEM)和能量分散X射线光谱(EDS,也称为EDX)来研究实验装置和AISI 1045钢预和后伪火花电子束处理的化学组合物。基于实验结果提出了金属表面轮廓逸出的机制。结果证明,可以优化伪火花基电子束参数以降低适当的脉冲照射时间和等离子体密度范围内的表面不规则性。

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