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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Effect of the scanning speed on the microgroove formation regime in nanosecond-pulsed laser scanning ablation of cermet
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Effect of the scanning speed on the microgroove formation regime in nanosecond-pulsed laser scanning ablation of cermet

机译:扫描速度对金属陶瓷纳秒脉冲激光扫描扫描中微血管形成制度的影响

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摘要

As the field of biomedicine continues to grow, so will the need for the quick and efficient manufacture of high-quality micro-textures, such as microfluidic systems, for biomedical functions. The utilization of a nanosecond-pulsed laser enables the realization of an efficient ablation rate in the preparation of a microscaled texture for biomedicine applications. To obtain high-quality ablated features, it is necessary to understand the interaction regime between the pulse laser and cermet. In this work, the effects of the scanning speed on formation mechanisms of microgrooves in pulse laser scanning ablation of cermet are investigated. The relative ablation processes in terms of the particle ejection and the morphology of the ablation traces under various scanning speeds are characterized. In addition, pump-probe shadowgraph imaging is used to observe the ablation dynamics and laser-plume interaction. The results demonstrate that the plume shielding effect, which stems from the intensive pulse energy overlap in the irradiated region, tends to occur at a low scanning speed and results in an intermittent ablation regime. Moreover, there is a critical scanning speed for overcoming the plume shielding effect when other laser parameters are kept constant. To realize an even and continuous ablation process, a high scanning speed that exceeds this critical value should be applied.
机译:由于生物医药的领域继续增长,因此需要快速高效地制造高质量的微纹理,例如微流体系统,用于生物医学功能。纳秒脉冲激光器的利用使得能够实现在制备生物医学应用的微观纹理的制备中的有效消融率。为了获得高质量的烧蚀特征,有必要了解脉冲激光和金属陶瓷之间的相互作用状态。在这项工作中,研究了扫描速度对金属陶瓷脉冲激光扫描消融脉冲激光扫描消融中的微血管形成机制的影响。特征在于,在各种扫描速度下,在颗粒喷射和消融迹线的形态方面的相对消融过程。此外,泵探测影像图成像用于观察消融动力学和激光羽流相互作用。结果表明,源于照射区域中的密集脉冲能量重叠的羽流屏蔽效应趋于低扫描速度,并导致间歇的消融方案。此外,当其他激光参数保持恒定时,存在克服羽流屏蔽效果的临界扫描速度。为了实现偶数和连续的消融过程,应该应用超过该临界值的高扫描速度。

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