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激光脉冲对金属陶瓷硬质合金表面冲击的声学特性

Acoustic Features of the Impact of Laser Pulses on Metal-Ceramic Carbide Alloy Surface.

作者信息

Grigoriev Sergey N, Kozochkin Mikhail P, Porvatov Artur N, Ostrikov Evgeniy A, Mustafaev Enver S, Gurin Vladimir D, Okunkova Anna A

机构信息

Department of High-Efficiency Processing Technologies, Moscow State University of Technology STANKIN, Vadkovskiy per. 3A, 127994 Moscow, Russia.

出版信息

Sensors (Basel). 2024 Aug 10;24(16):5160. doi: 10.3390/s24165160.

Abstract

Technologies associated with using concentrated energy flows are increasingly used in industry due to the need to manufacture products made of hard alloys and other difficult-to-process materials. This work is devoted to expanding knowledge about the processes accompanying the impact of laser pulses on material surfaces. The features of these processes are reflected in the acoustic emission signals, the parameters of which were used as a tool for understanding the accompanying phenomena. The influence of plasma formations above the material surface on self-oscillatory phenomena and the self-regulation process that affects pulse productivity were examined. The stability of plasma formation over time, its influence on the pulse performance, and changes in the heat flux power density were considered. Experimental data show the change in the power density transmitted by laser pulses to the surface when the focal plane is shifted. Experiments on the impact of laser pulses of different powers and durations on the surface of a hard alloy showed a relationship between the amplitude of acoustic emission and the pulse performance. This work shows the data content of acoustic emission signals and the possibility of expanding the research of concentrated energy flow technologies.

摘要

由于需要制造由硬质合金和其他难加工材料制成的产品,与使用集中能量流相关的技术在工业中越来越多地被使用。这项工作致力于扩展关于激光脉冲对材料表面产生影响时伴随的过程的知识。这些过程的特征反映在声发射信号中,其参数被用作理解伴随现象的工具。研究了材料表面上方等离子体形成对自激振荡现象和影响脉冲生产率的自调节过程的影响。考虑了等离子体形成随时间的稳定性、其对脉冲性能的影响以及热流功率密度的变化。实验数据表明,当焦平面移动时,激光脉冲传输到表面的功率密度会发生变化。对不同功率和持续时间的激光脉冲冲击硬质合金表面的实验表明,声发射幅度与脉冲性能之间存在关系。这项工作展示了声发射信号的数据内容以及扩展集中能量流技术研究的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4017/11360262/d9abddd10a75/sensors-24-05160-g001.jpg

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