记忆形状合金激光烧蚀瞬态等离子体动力学研究

S. Irimiciuc, N. Forna, Andrei Agop, M. Agop, Stefan Toma, Doriana Forna Agop
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引用次数: 1

摘要

理解实验和工业技术背后的基本机制体现了进步和剪裁新材料的基础之一。随着脉冲激光沉积技术成为获得具有可控化学计量的复杂生物相容性材料的关键技术之一,对多组分等离子体动力学的理解需要在实验和理论方面取得进展。本文采用时空分辨光学发射光谱和快速相机成像技术研究了Cu-Mn-Al和Fe-Mn-Si的激光烧蚀过程。在分形范式中,时空同形变换与烧蚀等离子体的整体动力学相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics of Transient Plasmas Generated by ns Laser Ablation of Memory Shape Alloys
Understanding the underline fundamental mechanism behind experimental and industrial technologies embodies one of the foundations of the advances and tailoring new materials. With the pulsed laser deposition being one of the key techniques for obtaining complex biocompatible materials with controllable stoichiometry, there is need for experimental and theoretical advancements towards understanding the dynamics of multi component plasmas. Here we investigate the laser ablation process on Cu-Mn-Al and Fe-Mn-Si by means of space-and time-resolved optical emission spectroscopy and fast camera imaging. In a fractal paradigm the space–time homographic transformations were correlated with the global dynamics of the ablation plasmas.
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